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IdM systems fall under the overarching umbrellas of IT security and Data Management.\r\nWith an IAM framework in place, information technology (IT) managers can control user access to critical information within their organizations. Identity and access management software offers role-based access control, which lets system administrators regulate access to systems or networks based on the roles of individual users within the enterprise. In this context, access is the ability of an individual user to perform a specific task, such as view, create or modify a file. Roles are defined according to job competency, authority and responsibility within the enterprise.\r\nSystems used for identity and access management include single sign-on systems, multi-factor authentication and privileged access management (PAM). These technologies also provide the ability to securely store identity and profile data as well as data governance functions to ensure that only data that is necessary and relevant is shared. IAM systems can be deployed on premises, provided by a third-party vendor through a cloud-based subscription model or deployed in a hybrid cloud.\r\n<span style=\"font-weight: bold; \">Basic components of IAM.</span> On a fundamental level, IAM encompasses the following components:\r\n<ul><li>How individuals are identified in a system.</li><li>How roles are identified in a system and how they are assigned to individuals.</li><li>Adding, removing and updating individuals and their roles in a system.</li><li>Assigning levels of access to individuals or groups of individuals.</li><li>Protecting the sensitive data within the system and securing the system itself.</li></ul>\r\nAccess identity management system should consist of all the necessary controls and tools to capture and record user login information, manage the enterprise database of user identities and orchestrate the assignment and removal of access privileges. That means that systems used for IAM should provide a centralized directory service with oversight as well as visibility into all aspects of the company user base.\r\nTechnologies for identity access and management should simplify the user provisioning and account setup process. User access management software should reduce the time it takes to complete these processes with a controlled workflow that decreases errors as well as the potential for abuse while allowing automated account fulfillment. An identity and access management system should also allow administrators to instantly view and change access rights.\r\nIAM systems should be used to provide flexibility to establish groups with specific privileges for specific roles so that access rights based on employee job functions can be uniformly assigned. Identity access management software should also provide request and approval processes for modifying privileges because employees with the same title and job location may need customized, or slightly different, access.\r\n\r\n","materialsDescription":"<h1 class=\"align-center\"><span style=\"font-weight: bold; \">What is the difference between identity and access management?</span></h1>\r\nAfter authentication, there needs to be an access control decision. The decision is based on the information available about the user. The difference between identity management and access management is thus:\r\n<ul><li>Identity Management is about managing the attributes related to the user.</li><li>Access Management is about evaluating the attributes based on policies and making Yes/No decisions.</li></ul>\r\nThere are three types of Access Control Systems: \r\n<ul><li>Discretionary Access Control (DAC)</li><li>Mandatory Access Control (MAC)</li><li>Role-Based Access Control (RBAC)</li></ul>\r\n<h1 class=\"align-center\">What are the main benefits of identity management?</h1>\r\nIdentity access and management are useful in many ways: it ensures regulatory compliance, enables cost savings, and simplifies the lives of your customers by enhancing their experience. These are the main benefits of having an IAM solution:\r\n<ul><li><span style=\"font-weight: bold; \">Easily accessible anywhere</span></li></ul>\r\nNowadays, people need their identities all the time to use services and resources. In that sense, they require access to any platform without limits using their IDs, thus eliminating barriers for customers to enter the platform anytime, anywhere.\r\n<ul><li><span style=\"font-weight: bold; \">It encourages the connection between the different parts</span></li></ul>\r\nThe digital transformation that is taking place among more and more organizations forces the need for people, applications and devices to stay connected to each other. And, as expected, all of these processes bring with them some security threats.\r\nHowever, IAM software is a solution that guarantees correct administration with the best identity providers, such as Salesforce, Twitter and Google. Authentication and security are two of the strengths of Identity and Access Management, as well as being extendable and ready for future advances. \r\n<ul><li><span style=\"font-weight: bold; \">It improves productivity</span></li></ul>\r\nIdentity software automates the entry of new personnel and facilitates access to all components of the system with which the company operates. This allows reducing times in the delivery of access so that they begin to produce immediately. For this reason, business agility is also increased by using the advantages that technology makes available to meet the demands of today’s world. \r\n<ul><li><span style=\"font-weight: bold; \">It optimizes user experience</span></li></ul>\r\nRemembering so many usernames and passwords to access social networks, banks and other services on the Internet becomes a challenge for people. Thanks to user identity management system, people can get an identity that provides access to different systems. Single sign-on (SSO) allows customers and partners to access different internal and external applications with the same access method. That way the user experience will not be affected.\r\n<ul><li><span style=\"font-weight: bold; \">Secure your brand at all levels</span></li></ul>\r\nThere will be no risk of security breach, regardless of whether a connection is made from multiple identity providers. Identity management software and access management software enables strong authentication to keep your business and brand secure. Detailed verification of all identities entering the system is performed, in addition to allowing various licenses to limit access levels. At the same time, it monitors through analysis, fraud detection and alert functions that indicate a possible real risk. In short, enterprise identity management system is a reliable tool that employs technology to support digital transformation. A software that provides agility, security and satisfaction to the company’s customers. ","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_IAM.png","alias":"iam-identity-and-access-management"},"52":{"id":52,"title":"SaaS - software as a service","description":"<span style=\"font-weight: bold;\">Software as a service (SaaS)</span> is a software licensing and delivery model in which software is licensed on a subscription basis and is centrally hosted. It is sometimes referred to as "on-demand software", and was formerly referred to as "software plus services" by Microsoft.\r\n SaaS services is typically accessed by users using a thin client, e.g. via a web browser. SaaS software solutions has become a common delivery model for many business applications, including office software, messaging software, payroll processing software, DBMS software, management software, CAD software, development software, gamification, virtualization, accounting, collaboration, customer relationship management (CRM), Management Information Systems (MIS), enterprise resource planning (ERP), invoicing, human resource management (HRM), talent acquisition, learning management systems, content management (CM), Geographic Information Systems (GIS), and service desk management. SaaS has been incorporated into the strategy of nearly all leading enterprise software companies.\r\nSaaS applications are also known as <span style=\"font-weight: bold;\">Web-based software</span>, <span style=\"font-weight: bold;\">on-demand software</span> and<span style=\"font-weight: bold;\"> hosted software</span>.\r\nThe term "Software as a Service" (SaaS) is considered to be part of the nomenclature of cloud computing, along with Infrastructure as a Service (IaaS), Platform as a Service (PaaS), Desktop as a Service (DaaS),managed software as a service (MSaaS), mobile backend as a service (MBaaS), and information technology management as a service (ITMaaS).\r\nBecause SaaS is based on cloud computing it saves organizations from installing and running applications on their own systems. That eliminates or at least reduces the associated costs of hardware purchases and maintenance and of software and support. The initial setup cost for a SaaS application is also generally lower than it for equivalent enterprise software purchased via a site license.\r\nSometimes, the use of SaaS cloud software can also reduce the long-term costs of software licensing, though that depends on the pricing model for the individual SaaS offering and the enterprise’s usage patterns. In fact, it’s possible for SaaS to cost more than traditional software licenses. This is an area IT organizations should explore carefully.<br />SaaS also provides enterprises the flexibility inherent with cloud services: they can subscribe to a SaaS offering as needed rather than having to buy software licenses and install the software on a variety of computers. The savings can be substantial in the case of applications that require new hardware purchases to support the software.<br /><br /><br /><br />","materialsDescription":"<h1 class=\"align-center\"><span style=\"font-weight: normal;\">Who uses SaaS?</span></h1>\r\nIndustry analyst Forrester Research notes that SaaS adoption has so far been concentrated mostly in human resource management (HRM), customer relationship management (CRM), collaboration software (e.g., email), and procurement solutions, but is poised to widen. Today it’s possible to have a data warehouse in the cloud that you can access with business intelligence software running as a service and connect to your cloud-based ERP like NetSuite or Microsoft Dynamics.The dollar savings can run into the millions. And SaaS installations are often installed and working in a fraction of the time of on-premises deployments—some can be ready in hours. \r\nSales and marketing people are likely familiar with Salesforce.com, the leading SaaS CRM software, with millions of users across more than 100,000 customers. Sales is going SaaS too, with apps available to support sales in order management, compensation, quote production and configure, price, quoting, electronic signatures, contract management and more.\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">Why SaaS? Benefits of software as a service</span></h1>\r\n<ul><li><span style=\"font-weight: bold;\">Lower cost of entry</span>. With SaaS solution, you pay for what you need, without having to buy hardware to host your new applications. Instead of provisioning internal resources to install the software, the vendor provides APIs and performs much of the work to get their software working for you. The time to a working solution can drop from months in the traditional model to weeks, days or hours with the SaaS model. In some businesses, IT wants nothing to do with installing and running a sales app. In the case of funding software and its implementation, this can be a make-or-break issue for the sales and marketing budget, so the lower cost really makes the difference.</li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">Reduced time to benefit/rapid prototyping</span>. In the SaaS model, the software application is already installed and configured. Users can provision the server for the cloud and quickly have the application ready for use. This cuts the time to benefit and allows for rapid demonstrations and prototyping. With many SaaS companies offering free trials, this means a painless proof of concept and discovery phase to prove the benefit to the organization. </li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">Pay as you go</span>. SaaS business software gives you the benefit of predictable costs both for the subscription and to some extent, the administration. Even as you scale, you can have a clear idea of what your costs will be. This allows for much more accurate budgeting, especially as compared to the costs of internal IT to manage upgrades and address issues for an owned instance.</li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">The SaaS vendor is responsible for upgrades, uptime and security</span>. Under the SaaS model, since the software is hosted by the vendor, they take on the responsibility for maintaining the software and upgrading it, ensuring that it is reliable and meeting agreed-upon service level agreements, and keeping the application and its data secure. While some IT people worry about Software as a Service security outside of the enterprise walls, the likely truth is that the vendor has a much higher level of security than the enterprise itself would provide. Many will have redundant instances in very secure data centers in multiple geographies. Also, the data is being automatically backed up by the vendor, providing additional security and peace of mind. Because of the data center hosting, you’re getting the added benefit of at least some disaster recovery. Lastly, the vendor manages these issues as part of their core competencies—let them.</li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">Integration and scalability.</span> Most SaaS apps are designed to support some amount of customization for the way you do business. SaaS vendors create APIs to allow connections not only to internal applications like ERPs or CRMs but also to other SaaS providers. One of the terrific aspects of integration is that orders written in the field can be automatically sent to the ERP. Now a salesperson in the field can check inventory through the catalog, write the order in front of the customer for approval, send it and receive confirmation, all in minutes. And as you scale with a SaaS vendor, there’s no need to invest in server capacity and software licenses. </li></ul>\r\n\r\n<ul><li><span style=\"font-weight: bold;\">Work anywhere</span>. Since the software is hosted in the cloud and accessible over the internet, users can access it via mobile devices wherever they are connected. This includes checking customer order histories prior to a sales call, as well as having access to real time data and real time order taking with the customer.</li></ul>\r\n<p class=\"align-left\"> </p>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/SaaS__1_.png","alias":"saas-software-as-a-service"},"499":{"id":499,"title":"SDN Software-Defined Network","description":" <span style=\"font-weight: bold; \">Software-defined networking (SDN)</span> technology is an approach to network management that enables dynamic, programmatically efficient network configuration in order to improve network performance and monitoring, making it more like cloud computing than traditional network management.\r\nSDN encompasses several types of technologies, including functional separation, network virtualization and automation through programmability. SDN solution is meant to address the fact that the static architecture of traditional networks is decentralized and complex while current networks require more flexibility and easy troubleshooting. \r\nSDN technology attempts to centralize network intelligence in one network component by disassociating the forwarding process of network packets (<span style=\"font-weight: bold; \">data plane</span>) from the routing process (<span style=\"font-weight: bold; \">control plane</span>). The control plane consists of one or more controllers which are considered as the brain of SDN network where the whole intelligence is incorporated. Originally, software defined technology focused solely on separation of the network control plane from the data plane. While the control plane makes decisions about how packets should flow through the network, the data plane actually moves packets from place to place. \r\nIn a classic SDN scenario, a packet arrives at a network switch, and rules built into the switch's proprietary firmware tell the switch where to forward the packet. These packet-handling rules are sent to the switch from the centralized controller. The switch - also known as a <span style=\"font-weight: bold; \">data plane device</span> - queries the controller for guidance as needed, and it provides the controller with information about traffic it handles. The switch sends every packet going to the same destination along the same path and treats all the packets the exact same way.\r\nSoftware defined networking solutions use an operation mode that is sometimes called adaptive or dynamic, in which a switch issues a route request to a controller for a packet that does not have a specific route. This process is separate from adaptive routing, which issues route requests through routers and algorithms based on the network topology, not through a controller.\r\nThe <span style=\"font-weight: bold;\">virtualization</span> aspect of SDN comes into play through a virtual overlay, which is a logically separate network on top of the physical network. Users can implement end-to-end overlays to abstract the underlying network and segment network traffic. This microsegmentation is especially useful for service providers and operators with multi-tenant cloud environments and cloud services, as they can provision a separate virtual network with specific policies for each tenant.","materialsDescription":"<h1 class=\"align-center\">Benefits of Software Defined Networking</h1>\r\nWith SDN software, an <span style=\"font-weight: bold; \">administrator can change any network switch's rules when necessary</span> - prioritizing, deprioritizing or even blocking specific types of packets with a granular level of control and security. This is especially helpful in a cloud computing multi-tenant architecture, because it enables the administrator to manage traffic loads in a flexible and more efficient manner. Essentially, this enables the administrator to use less expensive commodity switches and have more control over network traffic flow than ever before.\r\nOther benefits of SDN are <span style=\"font-weight: bold; \">network management</span> and <span style=\"font-weight: bold; \">end-to-end visibility.</span>A network administrator need only deal with one centralized controller to distribute policies to the connected switches, instead of configuring multiple individual devices. This capability is also a security advantage because the controller can monitor traffic and deploy security policies. If the controller deems traffic suspicious, for example, it can reroute or drop the packets.\r\nSoftware defined networking software also <span style=\"font-weight: bold; \">virtualizes hardware</span> and <span style=\"font-weight: bold; \">services </span>that were previously carried out by dedicated hardware, resulting in the touted benefits of a reduced hardware footprint and lower operational costs.\r\nAdditionally, SDN contributed to the emergence of <span style=\"font-weight: bold; \">software-defined wide area network (SD-WAN)</span> technology. SD-WAN employs the virtual overlay aspect of SDN technology, abstracting an organization's connectivity links throughout its WAN and creating a virtual network that can use whichever connection the controller deems fit to send traffic.\r\n<h1 class=\"align-center\">Are there any SDN security benefits?</h1>\r\nAs security issues become more complex at the edge of the network, it’s no wonder that network and security professionals are looking for new ways to approach network protection. Nowadays, it seems like SDN is going to be the answer. \r\n<ul><li><span style=\"font-weight: bold; \">Centralized Network Control </span></li></ul>\r\nIn a traditional network, devices (router/switches) make their own decisions locally about where and how best to send traffic. In terms of network security, SDN can be used to route data packets through a single firewall and make IDS and IPS data capture more efficient.\r\n<ul><li><span style=\"font-weight: bold; \">Simplify Configuration</span></li></ul>\r\nThe SDN makes it easier to automate configuration and improves the traceability of those configurations. The introduction of SDN network management allows dynamic programming and restructuring of network settings, which reduces the risk of DDoS attacks. It is also worth adding that SDN has automatic quarantine capabilities. \r\n<ul><li><span style=\"font-weight: bold; \">Creation of High-level Network Policies</span></li></ul>\r\n<span style=\"color: rgb(97, 97, 97); \">Rather than physically configuring security solutions, SDN facilitates the central management of security policies to make network operator roles more efficient and flexible. Moreover, SDN helps to move away from current management approaches such as SNMP/CLI and build more effective policy management. </span>\r\n<ul><li><span style=\"font-weight: bold; \"><span style=\"color: rgb(97, 97, 97); \">Easy to use Application Programming Interfaces (APIs)</span></span></li></ul>\r\n<span style=\"color: rgb(97, 97, 97); \">Cloud APIs are interfaces presented by software and play a vital role in SDN controllers and applications. Easy to use APIs help to manage network resources, improve the efficiency of IT resources, and aid integration with IT tools. Additionally, a number of good cloud security practices have been introduced recently. </span>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_SDN_Software_Defined_Network.png","alias":"sdn-software-defined-network"},"834":{"id":834,"title":"IoT - Internet of Things Security","description":" IoT security is the technology area concerned with safeguarding connected devices and networks in the internet of things (IoT).\r\nIoT involves adding internet connectivity to a system of interrelated computing devices, mechanical and digital machines, objects, animals and/or people. Each "thing" is provided a unique identifier and the ability to automatically transfer data over a network. Allowing devices to connect to the internet opens them up to a number of serious vulnerabilities if they are not properly protected.\r\nIoT security has become the subject of scrutiny after a number of high-profile incidents where a common IoT device was used to infiltrate and attack the larger network. Implementing security measures is critical to ensuring the safety of networks with IoT devices connected to them.\r\nIoT security hacks can happen in any industry, from smart home to a manufacturing plant to a connected car. The severity of impact depends greatly on the individual system, the data collected and/or the information it contains.\r\nAn attack disabling the brakes of a connected car, for example, or on a connected health device, such as an insulin pump hacked to administer too much medication to a patient, can be life-threatening. Likewise, an attack on a refrigeration system housing medicine that is monitored by an IoT system can ruin the viability of a medicine if temperatures fluctuate. Similarly, an attack on critical infrastructure -- an oil well, energy grid or water supply -- can be disastrous.\r\nSo, a robust IoT security portfolio must allow protecting devices from all types of vulnerabilities while deploying the security level that best matches application needs. Cryptography technologies are used to combat communication attacks. Security services are offered for protecting against lifecycle attacks. Isolation measures can be implemented to fend off software attacks. And, finally, IoT security should include tamper mitigation and side-channel attack mitigation technologies for fighting physical attacks of the chip.","materialsDescription":" <span style=\"font-weight: bold;\">What are the key requirements of IoT Security?</span>\r\nThe key requirements for any IoT security solution are:\r\n<ul><li>Device and data security, including authentication of devices and confidentiality and integrity of data</li><li>Implementing and running security operations at IoT scale</li><li>Meeting compliance requirements and requests</li><li>Meeting performance requirements as per the use case</li></ul>\r\n<span style=\"font-weight: bold;\">What do connected devices require to participate in the IoT Securely?</span>\r\nTo securely participate in the IoT, each connected device needs a unique identification – even before it has an IP address. This digital credential establishes the root of trust for the device’s entire lifecycle, from initial design to deployment to retirement.\r\n<span style=\"font-weight: bold;\">Why is device authentication necessary for the IoT?</span>\r\nStrong IoT device authentication is required to ensure connected devices on the IoT can be trusted to be what they purport to be. Consequently, each IoT device needs a unique identity that can be authenticated when the device attempts to connect to a gateway or central server. With this unique ID in place, IT system administrators can track each device throughout its lifecycle, communicate securely with it, and prevent it from executing harmful processes. If a device exhibits unexpected behavior, administrators can simply revoke its privileges.\r\n<span style=\"font-weight: bold;\">Why is secure manufacturing necessary for IoT devices?</span>\r\nIoT devices produced through unsecured manufacturing processes provide criminals opportunities to change production runs to introduce unauthorized code or produce additional units that are subsequently sold on the black market.\r\nOne way to secure manufacturing processes is to use hardware security modules (HSMs) and supporting security software to inject cryptographic keys and digital certificates and to control the number of units built and the code incorporated into each.\r\n<span style=\"font-weight: bold;\">Why is code signing necessary for IoT devices?</span>\r\nTo protect businesses, brands, partners, and users from software that has been infected by malware, software developers have adopted code signing. In the IoT, code signing in the software release process ensures the integrity of IoT device software and firmware updates and defends against the risks associated with code tampering or code that deviates from organizational policies.\r\nIn public key cryptography, code signing is a specific use of certificate-based digital signatures that enables an organization to verify the identity of the software publisher and certify the software has not been changed since it was published.\r\n<span style=\"font-weight: bold;\">What is IoT PKI?</span>\r\nToday there are more things (devices) online than there are people on the planet! Devices are the number one users of the Internet and need digital identities for secure operation. As enterprises seek to transform their business models to stay competitive, rapid adoption of IoT technologies is creating increasing demand for Public Key Infrastructures (PKIs) to provide digital certificates for the growing number of devices and the software and firmware they run.\r\nSafe IoT deployments require not only trusting the devices to be authentic and to be who they say they are, but also trusting that the data they collect is real and not altered. If one cannot trust the IoT devices and the data, there is no point in collecting, running analytics, and executing decisions based on the information collected.\r\nSecure adoption of IoT requires:\r\n<ul><li>Enabling mutual authentication between connected devices and applications</li><li>Maintaining the integrity and confidentiality of the data collected by devices</li><li>Ensuring the legitimacy and integrity of the software downloaded to devices</li><li>Preserving the privacy of sensitive data in light of stricter security regulations</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/iot.png","alias":"iot-internet-of-things-security"},"852":{"id":852,"title":"Network security","description":" Network security consists of the policies and practices adopted to prevent and monitor unauthorized access, misuse, modification, or denial of a computer network and network-accessible resources. Network security involves the authorization of access to data in a network, which is controlled by the network administrator. Users choose or are assigned an ID and password or other authenticating information that allows them access to information and programs within their authority. Network security covers a variety of computer networks, both public and private, that are used in everyday jobs; conducting transactions and communications among businesses, government agencies and individuals. Networks can be private, such as within a company, and others which might be open to public access. Network security is involved in organizations, enterprises, and other types of institutions. It does as its title explains: it secures the network, as well as protecting and overseeing operations being done. The most common and simple way of protecting a network resource is by assigning it a unique name and a corresponding password.\r\nNetwork security starts with authentication, commonly with a username and a password. Since this requires just one detail authenticating the user name — i.e., the password—this is sometimes termed one-factor authentication. With two-factor authentication, something the user 'has' is also used (e.g., a security token or 'dongle', an ATM card, or a mobile phone); and with three-factor authentication, something the user 'is' is also used (e.g., a fingerprint or retinal scan).\r\nOnce authenticated, a firewall enforces access policies such as what services are allowed to be accessed by the network users. Though effective to prevent unauthorized access, this component may fail to check potentially harmful content such as computer worms or Trojans being transmitted over the network. Anti-virus software or an intrusion prevention system (IPS) help detect and inhibit the action of such malware. An anomaly-based intrusion detection system may also monitor the network like wireshark traffic and may be logged for audit purposes and for later high-level analysis. Newer systems combining unsupervised machine learning with full network traffic analysis can detect active network attackers from malicious insiders or targeted external attackers that have compromised a user machine or account.\r\nCommunication between two hosts using a network may be encrypted to maintain privacy.\r\nHoneypots, essentially decoy network-accessible resources, may be deployed in a network as surveillance and early-warning tools, as the honeypots are not normally accessed for legitimate purposes. Techniques used by the attackers that attempt to compromise these decoy resources are studied during and after an attack to keep an eye on new exploitation techniques. Such analysis may be used to further tighten security of the actual network being protected by the honeypot. A honeypot can also direct an attacker's attention away from legitimate servers. A honeypot encourages attackers to spend their time and energy on the decoy server while distracting their attention from the data on the real server. Similar to a honeypot, a honeynet is a network set up with intentional vulnerabilities. Its purpose is also to invite attacks so that the attacker's methods can be studied and that information can be used to increase network security. A honeynet typically contains one or more honeypots.","materialsDescription":" <span style=\"font-weight: bold;\">What is Network Security?</span>\r\nNetwork security is any action an organization takes to prevent malicious use or accidental damage to the network’s private data, its users, or their devices. The goal of network security is to keep the network running and safe for all legitimate users.\r\nBecause there are so many ways that a network can be vulnerable, network security involves a broad range of practices. These include:\r\n<ul><li><span style=\"font-weight: bold;\">Deploying active devices:</span> Using software to block malicious programs from entering, or running within, the network. Blocking users from sending or receiving suspicious-looking emails. Blocking unauthorized use of the network. Also, stopping the network's users accessing websites that are known to be dangerous.</li><li><span style=\"font-weight: bold;\">Deploying passive devices:</span> For instance, using devices and software that report unauthorized intrusions into the network, or suspicious activity by authorized users.</li><li><span style=\"font-weight: bold;\">Using preventative devices:</span> Devices that help identify potential security holes, so that network staff can fix them.</li><li><span style=\"font-weight: bold;\">Ensuring users follow safe practices:</span> Even if the software and hardware are set up to be secure, the actions of users can create security holes. Network security staff is responsible for educating members of the organization about how they can stay safe from potential threats.</li></ul>\r\n<span style=\"font-weight: bold;\">Why is Network Security Important?</span>\r\nUnless it’s properly secured, any network is vulnerable to malicious use and accidental damage. Hackers, disgruntled employees, or poor security practices within the organization can leave private data exposed, including trade secrets and customers’ private details.\r\nLosing confidential research, for example, can potentially cost an organization millions of dollars by taking away competitive advantages it paid to gain. While hackers stealing customers’ details and selling them to be used in fraud, it creates negative publicity and public mistrust of the organization.\r\nThe majority of common attacks against networks are designed to gain access to information, by spying on the communications and data of users, rather than to damage the network itself.\r\nBut attackers can do more than steal data. They may be able to damage users’ devices or manipulate systems to gain physical access to facilities. This leaves the organization’s property and members at risk of harm.\r\nCompetent network security procedures keep data secure and block vulnerable systems from outside interference. This allows the network’s users to remain safe and focus on achieving the organization’s goals.\r\n<span style=\"font-weight: bold;\">Why Do I Need Formal Education to Run a Computer Network?</span>\r\nEven the initial setup of security systems can be difficult for those unfamiliar with the field. A comprehensive security system is made of many pieces, each of which needs specialized knowledge.\r\nBeyond setup, each aspect of security is constantly evolving. New technology creates new opportunities for accidental security leaks, while hackers take advantage of holes in security to do damage as soon as they find them. Whoever is in charge of the network’s security needs to be able to understand the technical news and changes as they happen, so they can implement safety strategies right away.\r\nProperly securing your network using the latest information on vulnerabilities helps minimize the risk that attacks will succeed. Security Week reported that 44% of breaches in 2014 came from exploits that were 2-4 years old.\r\nUnfortunately, many of the technical aspects of network security are beyond those who make hiring decisions. So, the best way an organization can be sure that their network security personnel are able to properly manage the threats is to hire staff with the appropriate qualifications.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Network_security.png","alias":"network-security"},"854":{"id":854,"title":"Security Orchestration and Automation","description":" SOAR (Security Orchestration, Automation and Response) is a solution stack of compatible software programs that allow an organization to collect data about security threats from multiple sources and respond to low-level security events without human assistance. The goal of using a SOAR stack is to improve the efficiency of physical and digital security operations. The term, which was coined by the research firm Gartner, can be applied to compatible products and services that help define, prioritize, standardize and automate incident response functions.\r\nSOAR solutions are gaining visibility and real-world use driven by early adoption to improve security operations centers. Security and risk management leaders should start to evaluate how these solutions can support and optimize their broader security operations capabilities.\r\nSecurity orchestration, automation and response (SOAR) defines as technologies that enable organizations to take inputs from a variety of sources (mostly from security information and event management [SIEM] systems) and apply workflows aligned to processes and procedures. These can be orchestrated via integrations with other technologies and automated to achieve a desired outcome and greater visibility. Additional capabilities include case and incident management features; the ability to manage threat intelligence, dashboards and reporting; and analytics that can be applied across various functions. SOAR tools significantly enhance security operations activities like threat detection and response by providing machine-powered assistance to human analysts to improve the efficiency and consistency of people and processes.\r\nMost SOAR tools are still strongest in their original "home offerings", which are security incident and response platforms (SIRPs), security orchestration and automation (SOA), and threat intelligence platforms (TIPs). Currently, the most common use case for SOAR by an organization is to define incident analysis and response procedures in a digital workflow format — such as plays in a security operations playbook. Additionally, these tools facilitate the use and operationalization of threat intelligence in security operations, which enhances the ability to predict, prevent, detect and respond to the prevailing threat landscape that a company faces.\r\nTo understand the evolving SOAR market, it is necessary to define the specific terms used — namely, orchestration and automation — in the context of security operations:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Aggregation:</span></span> The ability to aggregate/ingest data across sources. This may take the form of alerts, signals or other inputs from other technologies such as an alert from a SIEM tool or an email sent to a group mailbox. Other data that is ingested may include user information from an identity and access management (IAM) tool or threat intelligence from multiple sources.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Enrichment:</span></span> Whether after incident identification or during data collection and processing, SOAR solutions can help integrate external threat intelligence, perform internal contextual lookups or run processes to gather further data according to defined actions.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Orchestration:</span></span> The complexity of combining resources involves coordination of workflows with manual and automated steps, involving many components and affecting information systems and often humans as well.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Automation:</span></span> This concept involves the capability of software and systems to execute functions on their own, typically to affect other information systems and applications.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Response:</span></span> Manual or automated response provides canned resolution to programmatically defined activities. This includes activities from a basic level — ticket creation in an IT service desk application — to more advanced activities like applying some form of response via another security control, like blocking an IP address by changing a firewall rule. This functionality is the most impactful but also applies to the most complex use cases.</li></ul>\r\nBuyers are expressing demand for SOAR for several reasons:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Staff shortages:</span></span> Due to staff shortages in security operations, clients describe a growing need to automate repeatable tasks, streamline workflows and orchestrate security tasks resulting in operational scale. For instance, if you have a team, SOAR can give them more reach — but this is not a tool to get instead of a team. Also, organizations need the ability to demonstrate to management the organization’s ability to reduce the impact of inevitable incidents.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Continued evolution of threats and increases in volume:</span></span> As organizations consider threats that destroy data and can result in disclosure of intellectual property and monetary extortion, they require rapid, consistent, continuous and more frequent responses with fewer manual steps.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Improving alert triage quality and speed:</span></span> Security monitoring systems (such as SIEMs) are known to cost a significant amount to run and generate a high number of alerts, including many found to be “false positives” or simply not relevant after additional investigation. Security and risk management leaders then treat alert triage in a very manual way, which is subject to mistakes by the analysts. This leaves real incidents ignored. SOAR helps improve the signal-to-noise ratio by automating the repeatable, mundane aspects of incident investigation. This creates a positive situation where analysts can spend more time investigating and responding to an event instead of spending most of their time collecting all the data required to perform the investigation.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Need for a centralized view of threat intelligence:</span></span> A large number of security controls on the market today benefit from threat intelligence. SOAR tools allow for the centralized collection, aggregation, deduplication, enrichment of existing data with threat intelligence and, importantly, conversion of intelligence into action.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Reducing time to respond, contain and remediate:</span></span> Organizations are dealing with increasingly aggressive threats, such as ransomware, where rapid response of only minutes at best is required in order to stand a chance of containing the threat that is spread laterally in your environment. This scenario forces organizations to reduce the time they take to respond to those incidents, typically by delegating more tasks to machines. Reducing the response time, including incident containment and remediation, is one of the most effective ways to control the impact of security incidents. Like a brush fire, the sooner you can get to it, the smaller it is, and therefore the easier it is to put out.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Reducing unnecessary, routine work for the analysts:</span></span> SOC analysts are often working with multiple tools. They are looking at a stream of row and column SIEM console alerts, threat intelligence (TI) service portals for information about the entities involved, and endpoint detection and response (EDR) for context on what is happening on the affected endpoint. They may even be using workflow tools to control the triage and investigation processes.</li></ul>\r\nThe SOAR market is still an emerging market and it is forecast to grow up to $550 million in the five-year (2018-2023) time frame. Many organizations implement SOAR tools with use cases primarily focused on making their SOC analysts more efficient such that they can process more incidents while having more time to apply human analysis and drive response actions much quicker. Historically, they were not aware of the existence of these types of solutions. There are now more clients aware of SOAR solutions, which is fueling further adoption. This awareness is broadening; even SOAR vendors claim to have less work evangelizing about the technology and more conversations about their capabilities and differentiators. However, improving detection and response activities is just one of several opportunities for the use of SOAR tools to support security operations activities.\r\nSince SOAR is often used as an umbrella term that covers security operations, security incident response and threat intelligence, many vendors are driving their existing solutions in the fight for market leadership.","materialsDescription":" <span style=\"font-weight: bold; \">What is SOAR?</span>\r\nCoined by research company Gartner, Security Orchestration, Automation and Response (SOAR) is a term used to describe the convergence of three distinct technology markets: security orchestration and automation, security incident response platforms (SIRP), and threat intelligence platforms (TIP).\r\nSOAR technologies enable organizations to collect and aggregate vast amounts of security data and alerts from a wide range of sources. This assists human and machine-led analysis, as well as the standardization and automation of threat detection and remediation.\r\n<span style=\"font-weight: bold;\">What are the activities of SOAR?</span>\r\nSOAR supports multiple activities for security operations decision making such as, but not limited to, the following:\r\n<ul><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Prioritizing security operations activities:</span></span> Use of a SOAR solution requires organizations to consider questions about their processes. Which are most critical? Which ones consume the most staff time and resources? Which ones would benefit from automation? Where do we have gaps in our documented procedures? The preparation and planning for SOAR, and its ongoing use, help organizations prioritize and manage where orchestration and automation should be applied and where it can help improve response. This response can then lead to improvements in security operations and showing a demonstrable impact on business operations (e.g., faster time to detect and respond to threats that could impact business operations and optimization of security operations staff and budget).</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Formalizing triage and incident response:</span></span> Security operations teams must be consistent in their responses to incident and threats. They must also follow best practices, provide an audit trail and be measurable against business objectives.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Automating response:</span></span> Speed is of the essence in today’s threat landscape. Attacks are increasing in speed (e.g., ransomware is now being automated to spread with worm functionality), but security operations are not automated. Having the ability to automate response action offers SOC teams the ability to quickly isolate/contain security incidents. Some responses can be fully automated, but at this time many SOAR users still inject a human to make the final decision. However, even this reduces the mean time to respond for the organization compared to being fully dependent on “human power.”</li></ul>\r\n<span style=\"font-weight: bold;\">SOAR Recommendations</span>\r\nSecurity and risk management leaders overseeing security operations should:\r\n<ul><li>Prepare for their SOAR implementations by having a starting set of defined processes and workflows that can be implemented. Out-of-the-box plays and integrations are a starting point but can rarely be implemented without some customizations.</li><li>Plan for the implementation and the ongoing operation and administration of SOAR tools by using a mix of professional services and internal resources.</li><li>Put a contingency plan in place in the event the SOAR tool is acquired by another vendor. Acquisitions are occurring with some frequency as the market evolves. Buyers should be prepared.</li></ul>\r\n<span style=\"font-weight: bold;\">Key Findings</span>\r\n<ul><li>The SOAR technology market aims to converge security orchestration and automation (SOA), security incident response (SIR) and threat intelligence platform (TIP) capabilities into single solutions.</li><li>Early adopters of SOAR technologies have been organizations and managed security service providers with mature security operations centers (SOCs) that understood the benefits of incorporating SOAR capabilities into their operations. However, use cases implemented by early adopters have not evolved over the last 12 months and are stuck in a rut, limiting the long-term potential for SOAR in security operations.</li><li>SOAR solutions are not “plug-and-play.” Even though solutions have a library of out-of-the-box use cases and integrations, buyers are reporting multiweek professional services engagements to implement their initial use cases, as every organization’s processes and technologies deployed are different.</li><li>Orchestration and automation are starting to be localized in point security technologies, usually in the form of predefined, automated workflows. This is not the same as a full-featured SOAR solution.<br /></li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/automation-engineering-management-computer-icons.png","alias":"security-orchestration-and-automation"}},"branches":"Information Technology","companySizes":"101 to 500 Employees","companyUrl":"https://ubiqube.com/","countryCodes":["IRL"],"certifications":[],"isSeller":true,"isSupplier":false,"isVendor":true,"presenterCodeLng":"","seo":{"title":"UBiqube","keywords":"","description":" UBiqube is a global software supplier that provides vendor-neutral, multi-domain end-to-end network and security orchestration solutions to service providers and large or medium enterprises. Leading the digitalization of the networking industry, the company d","og:title":"UBiqube","og:description":" UBiqube is a global software supplier that provides vendor-neutral, multi-domain end-to-end network and security orchestration solutions to service providers and large or medium enterprises. Leading the digitalization of the networking industry, the company d","og:image":"https://old.roi4cio.com/uploads/roi/company/UBiqube_logo.png"},"eventUrl":"","vendorPartners":[],"supplierPartners":[],"vendoredProducts":[{"id":5021,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/UBiqube_Logo.jpg","logo":true,"scheme":false,"title":"UBiqube I-SOAR","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"ubiqube-i-soar","companyTitle":"UBiqube","companyTypes":["vendor"],"companyId":5400,"companyAlias":"ubiqube","description":"At UBiqube we believe that a Holistic Multi-Domain Orchestration Strategy must be used to automate Security related Processes. Accelerating convergence of different technologies such as Cloud, 5G, IoT and Edge makes it costly, inefficient and unsafe to continue treating security processes separately. Automation of IT network, computing and storage infrastructure is a fundamental part of digital transformation and so it is natural to embrace SOAR to automate IT security processes. However, for SOAR to emerge as a comprehensive solution for the future, it will have to integrate remediation scenarios that cross many domains, such as Cloud, IoT and 5G. In other words, SOAR needs to be part of, and not separate from, technology convergence. This is what we advocate at UBiqube. We call it I-SOAR, for ‘Integrated SOAR’. Here is why and how:\r\n<span style=\"font-weight: bold;\">1. Why is Multi-Domain Orchestration so material to effective Security Automation?</span>\r\nThe first wave of SOAR solutions stems from pure players in the security space, such as Managed Service Security Providers (MSSPs), focusing exclusively on the needs of a Security Operations Centre (SOC). These solutions integrate the business functions needed for security remediation as well as the surrounding security services management. In other words, they integrate Security Information and Event Management (SIEM) with customized Business Process Management (BPM) playbooks. The automation processes that relate to infrastructure (i.e. policy provisioning) typically need vendor-specific management modules for network and element management (NMS/EMS). This means that implementing a security remediation scenario across these external systems would typically require outside help that, in turn, introduces new risks and threats.\r\nThis limits the addressable automation scope of the current SOAR solutions. The cloudification of IT, the emergence of Edge Compute and IoT are fueling this integration need. These will make it harder to keep a clear demarcation line between the historic security silo and the newer converged infrastructure technologies. As infrastructure is consumed more as a continuum, security remediation strategies may include a number of reroutes that will have the need to reconfigure devices outside the security domain, change QoS policies, load-balancing rules, or activate failover links. The possible scenarios are endless, but an effective security automation solution needs to address them all.\r\n<span style=\"font-weight: bold;\">2. How do we turn SOAR into “I-SOAR”?</span>\r\nMeet the <span style=\"font-weight: bold;\">MSActivator DevSecOps framework!</span>\r\nAt UBiqube we have developed an ‘abstracted’ activation layer that makes it easy for trained engineers to create adaptors for each and every vendor and system a process could call. This frees the ‘Automation process’ designer to implement any remediation scenario across security and non-security domains without limitations from any infrastructure or a specific vendor. This paves the way for new DevSecOps best practices with greater automation, lower costs and most importantly, greater security! Abstraction is at the core of MSActivator, which provides both a full security orchestration and automation environment as well as documented APIs for integration with other tools. Developers with different expertise can focus on the different areas of business process automation and system integration to deliver a single automation solution for their IT environment and with full vendor neutrality.","shortDescription":"Integrated SOAR - security orchestration automation and response.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":3,"sellingCount":12,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"UBiqube I-SOAR","keywords":"","description":"At UBiqube we believe that a Holistic Multi-Domain Orchestration Strategy must be used to automate Security related Processes. 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Accelerating convergence of different technologies such as Cloud, 5G, IoT and Edge makes it costly, inefficient and unsafe to continu","og:image":"https://old.roi4cio.com/fileadmin/user_upload/UBiqube_Logo.jpg"},"eventUrl":"","translationId":5022,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":834,"title":"IoT - Internet of Things Security","alias":"iot-internet-of-things-security","description":" IoT security is the technology area concerned with safeguarding connected devices and networks in the internet of things (IoT).\r\nIoT involves adding internet connectivity to a system of interrelated computing devices, mechanical and digital machines, objects, animals and/or people. Each "thing" is provided a unique identifier and the ability to automatically transfer data over a network. Allowing devices to connect to the internet opens them up to a number of serious vulnerabilities if they are not properly protected.\r\nIoT security has become the subject of scrutiny after a number of high-profile incidents where a common IoT device was used to infiltrate and attack the larger network. Implementing security measures is critical to ensuring the safety of networks with IoT devices connected to them.\r\nIoT security hacks can happen in any industry, from smart home to a manufacturing plant to a connected car. The severity of impact depends greatly on the individual system, the data collected and/or the information it contains.\r\nAn attack disabling the brakes of a connected car, for example, or on a connected health device, such as an insulin pump hacked to administer too much medication to a patient, can be life-threatening. Likewise, an attack on a refrigeration system housing medicine that is monitored by an IoT system can ruin the viability of a medicine if temperatures fluctuate. Similarly, an attack on critical infrastructure -- an oil well, energy grid or water supply -- can be disastrous.\r\nSo, a robust IoT security portfolio must allow protecting devices from all types of vulnerabilities while deploying the security level that best matches application needs. Cryptography technologies are used to combat communication attacks. Security services are offered for protecting against lifecycle attacks. Isolation measures can be implemented to fend off software attacks. And, finally, IoT security should include tamper mitigation and side-channel attack mitigation technologies for fighting physical attacks of the chip.","materialsDescription":" <span style=\"font-weight: bold;\">What are the key requirements of IoT Security?</span>\r\nThe key requirements for any IoT security solution are:\r\n<ul><li>Device and data security, including authentication of devices and confidentiality and integrity of data</li><li>Implementing and running security operations at IoT scale</li><li>Meeting compliance requirements and requests</li><li>Meeting performance requirements as per the use case</li></ul>\r\n<span style=\"font-weight: bold;\">What do connected devices require to participate in the IoT Securely?</span>\r\nTo securely participate in the IoT, each connected device needs a unique identification – even before it has an IP address. This digital credential establishes the root of trust for the device’s entire lifecycle, from initial design to deployment to retirement.\r\n<span style=\"font-weight: bold;\">Why is device authentication necessary for the IoT?</span>\r\nStrong IoT device authentication is required to ensure connected devices on the IoT can be trusted to be what they purport to be. Consequently, each IoT device needs a unique identity that can be authenticated when the device attempts to connect to a gateway or central server. With this unique ID in place, IT system administrators can track each device throughout its lifecycle, communicate securely with it, and prevent it from executing harmful processes. If a device exhibits unexpected behavior, administrators can simply revoke its privileges.\r\n<span style=\"font-weight: bold;\">Why is secure manufacturing necessary for IoT devices?</span>\r\nIoT devices produced through unsecured manufacturing processes provide criminals opportunities to change production runs to introduce unauthorized code or produce additional units that are subsequently sold on the black market.\r\nOne way to secure manufacturing processes is to use hardware security modules (HSMs) and supporting security software to inject cryptographic keys and digital certificates and to control the number of units built and the code incorporated into each.\r\n<span style=\"font-weight: bold;\">Why is code signing necessary for IoT devices?</span>\r\nTo protect businesses, brands, partners, and users from software that has been infected by malware, software developers have adopted code signing. In the IoT, code signing in the software release process ensures the integrity of IoT device software and firmware updates and defends against the risks associated with code tampering or code that deviates from organizational policies.\r\nIn public key cryptography, code signing is a specific use of certificate-based digital signatures that enables an organization to verify the identity of the software publisher and certify the software has not been changed since it was published.\r\n<span style=\"font-weight: bold;\">What is IoT PKI?</span>\r\nToday there are more things (devices) online than there are people on the planet! Devices are the number one users of the Internet and need digital identities for secure operation. As enterprises seek to transform their business models to stay competitive, rapid adoption of IoT technologies is creating increasing demand for Public Key Infrastructures (PKIs) to provide digital certificates for the growing number of devices and the software and firmware they run.\r\nSafe IoT deployments require not only trusting the devices to be authentic and to be who they say they are, but also trusting that the data they collect is real and not altered. If one cannot trust the IoT devices and the data, there is no point in collecting, running analytics, and executing decisions based on the information collected.\r\nSecure adoption of IoT requires:\r\n<ul><li>Enabling mutual authentication between connected devices and applications</li><li>Maintaining the integrity and confidentiality of the data collected by devices</li><li>Ensuring the legitimacy and integrity of the software downloaded to devices</li><li>Preserving the privacy of sensitive data in light of stricter security regulations</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/iot.png"},{"id":854,"title":"Security Orchestration and Automation","alias":"security-orchestration-and-automation","description":" SOAR (Security Orchestration, Automation and Response) is a solution stack of compatible software programs that allow an organization to collect data about security threats from multiple sources and respond to low-level security events without human assistance. The goal of using a SOAR stack is to improve the efficiency of physical and digital security operations. The term, which was coined by the research firm Gartner, can be applied to compatible products and services that help define, prioritize, standardize and automate incident response functions.\r\nSOAR solutions are gaining visibility and real-world use driven by early adoption to improve security operations centers. Security and risk management leaders should start to evaluate how these solutions can support and optimize their broader security operations capabilities.\r\nSecurity orchestration, automation and response (SOAR) defines as technologies that enable organizations to take inputs from a variety of sources (mostly from security information and event management [SIEM] systems) and apply workflows aligned to processes and procedures. These can be orchestrated via integrations with other technologies and automated to achieve a desired outcome and greater visibility. Additional capabilities include case and incident management features; the ability to manage threat intelligence, dashboards and reporting; and analytics that can be applied across various functions. SOAR tools significantly enhance security operations activities like threat detection and response by providing machine-powered assistance to human analysts to improve the efficiency and consistency of people and processes.\r\nMost SOAR tools are still strongest in their original "home offerings", which are security incident and response platforms (SIRPs), security orchestration and automation (SOA), and threat intelligence platforms (TIPs). Currently, the most common use case for SOAR by an organization is to define incident analysis and response procedures in a digital workflow format — such as plays in a security operations playbook. Additionally, these tools facilitate the use and operationalization of threat intelligence in security operations, which enhances the ability to predict, prevent, detect and respond to the prevailing threat landscape that a company faces.\r\nTo understand the evolving SOAR market, it is necessary to define the specific terms used — namely, orchestration and automation — in the context of security operations:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Aggregation:</span></span> The ability to aggregate/ingest data across sources. This may take the form of alerts, signals or other inputs from other technologies such as an alert from a SIEM tool or an email sent to a group mailbox. Other data that is ingested may include user information from an identity and access management (IAM) tool or threat intelligence from multiple sources.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Enrichment:</span></span> Whether after incident identification or during data collection and processing, SOAR solutions can help integrate external threat intelligence, perform internal contextual lookups or run processes to gather further data according to defined actions.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Orchestration:</span></span> The complexity of combining resources involves coordination of workflows with manual and automated steps, involving many components and affecting information systems and often humans as well.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Automation:</span></span> This concept involves the capability of software and systems to execute functions on their own, typically to affect other information systems and applications.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Response:</span></span> Manual or automated response provides canned resolution to programmatically defined activities. This includes activities from a basic level — ticket creation in an IT service desk application — to more advanced activities like applying some form of response via another security control, like blocking an IP address by changing a firewall rule. This functionality is the most impactful but also applies to the most complex use cases.</li></ul>\r\nBuyers are expressing demand for SOAR for several reasons:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Staff shortages:</span></span> Due to staff shortages in security operations, clients describe a growing need to automate repeatable tasks, streamline workflows and orchestrate security tasks resulting in operational scale. For instance, if you have a team, SOAR can give them more reach — but this is not a tool to get instead of a team. Also, organizations need the ability to demonstrate to management the organization’s ability to reduce the impact of inevitable incidents.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Continued evolution of threats and increases in volume:</span></span> As organizations consider threats that destroy data and can result in disclosure of intellectual property and monetary extortion, they require rapid, consistent, continuous and more frequent responses with fewer manual steps.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Improving alert triage quality and speed:</span></span> Security monitoring systems (such as SIEMs) are known to cost a significant amount to run and generate a high number of alerts, including many found to be “false positives” or simply not relevant after additional investigation. Security and risk management leaders then treat alert triage in a very manual way, which is subject to mistakes by the analysts. This leaves real incidents ignored. SOAR helps improve the signal-to-noise ratio by automating the repeatable, mundane aspects of incident investigation. This creates a positive situation where analysts can spend more time investigating and responding to an event instead of spending most of their time collecting all the data required to perform the investigation.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Need for a centralized view of threat intelligence:</span></span> A large number of security controls on the market today benefit from threat intelligence. SOAR tools allow for the centralized collection, aggregation, deduplication, enrichment of existing data with threat intelligence and, importantly, conversion of intelligence into action.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Reducing time to respond, contain and remediate:</span></span> Organizations are dealing with increasingly aggressive threats, such as ransomware, where rapid response of only minutes at best is required in order to stand a chance of containing the threat that is spread laterally in your environment. This scenario forces organizations to reduce the time they take to respond to those incidents, typically by delegating more tasks to machines. Reducing the response time, including incident containment and remediation, is one of the most effective ways to control the impact of security incidents. Like a brush fire, the sooner you can get to it, the smaller it is, and therefore the easier it is to put out.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Reducing unnecessary, routine work for the analysts:</span></span> SOC analysts are often working with multiple tools. They are looking at a stream of row and column SIEM console alerts, threat intelligence (TI) service portals for information about the entities involved, and endpoint detection and response (EDR) for context on what is happening on the affected endpoint. They may even be using workflow tools to control the triage and investigation processes.</li></ul>\r\nThe SOAR market is still an emerging market and it is forecast to grow up to $550 million in the five-year (2018-2023) time frame. Many organizations implement SOAR tools with use cases primarily focused on making their SOC analysts more efficient such that they can process more incidents while having more time to apply human analysis and drive response actions much quicker. Historically, they were not aware of the existence of these types of solutions. There are now more clients aware of SOAR solutions, which is fueling further adoption. This awareness is broadening; even SOAR vendors claim to have less work evangelizing about the technology and more conversations about their capabilities and differentiators. However, improving detection and response activities is just one of several opportunities for the use of SOAR tools to support security operations activities.\r\nSince SOAR is often used as an umbrella term that covers security operations, security incident response and threat intelligence, many vendors are driving their existing solutions in the fight for market leadership.","materialsDescription":" <span style=\"font-weight: bold; \">What is SOAR?</span>\r\nCoined by research company Gartner, Security Orchestration, Automation and Response (SOAR) is a term used to describe the convergence of three distinct technology markets: security orchestration and automation, security incident response platforms (SIRP), and threat intelligence platforms (TIP).\r\nSOAR technologies enable organizations to collect and aggregate vast amounts of security data and alerts from a wide range of sources. This assists human and machine-led analysis, as well as the standardization and automation of threat detection and remediation.\r\n<span style=\"font-weight: bold;\">What are the activities of SOAR?</span>\r\nSOAR supports multiple activities for security operations decision making such as, but not limited to, the following:\r\n<ul><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Prioritizing security operations activities:</span></span> Use of a SOAR solution requires organizations to consider questions about their processes. Which are most critical? Which ones consume the most staff time and resources? Which ones would benefit from automation? Where do we have gaps in our documented procedures? The preparation and planning for SOAR, and its ongoing use, help organizations prioritize and manage where orchestration and automation should be applied and where it can help improve response. This response can then lead to improvements in security operations and showing a demonstrable impact on business operations (e.g., faster time to detect and respond to threats that could impact business operations and optimization of security operations staff and budget).</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Formalizing triage and incident response:</span></span> Security operations teams must be consistent in their responses to incident and threats. They must also follow best practices, provide an audit trail and be measurable against business objectives.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Automating response:</span></span> Speed is of the essence in today’s threat landscape. Attacks are increasing in speed (e.g., ransomware is now being automated to spread with worm functionality), but security operations are not automated. Having the ability to automate response action offers SOC teams the ability to quickly isolate/contain security incidents. Some responses can be fully automated, but at this time many SOAR users still inject a human to make the final decision. However, even this reduces the mean time to respond for the organization compared to being fully dependent on “human power.”</li></ul>\r\n<span style=\"font-weight: bold;\">SOAR Recommendations</span>\r\nSecurity and risk management leaders overseeing security operations should:\r\n<ul><li>Prepare for their SOAR implementations by having a starting set of defined processes and workflows that can be implemented. Out-of-the-box plays and integrations are a starting point but can rarely be implemented without some customizations.</li><li>Plan for the implementation and the ongoing operation and administration of SOAR tools by using a mix of professional services and internal resources.</li><li>Put a contingency plan in place in the event the SOAR tool is acquired by another vendor. Acquisitions are occurring with some frequency as the market evolves. Buyers should be prepared.</li></ul>\r\n<span style=\"font-weight: bold;\">Key Findings</span>\r\n<ul><li>The SOAR technology market aims to converge security orchestration and automation (SOA), security incident response (SIR) and threat intelligence platform (TIP) capabilities into single solutions.</li><li>Early adopters of SOAR technologies have been organizations and managed security service providers with mature security operations centers (SOCs) that understood the benefits of incorporating SOAR capabilities into their operations. However, use cases implemented by early adopters have not evolved over the last 12 months and are stuck in a rut, limiting the long-term potential for SOAR in security operations.</li><li>SOAR solutions are not “plug-and-play.” Even though solutions have a library of out-of-the-box use cases and integrations, buyers are reporting multiweek professional services engagements to implement their initial use cases, as every organization’s processes and technologies deployed are different.</li><li>Orchestration and automation are starting to be localized in point security technologies, usually in the form of predefined, automated workflows. 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