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После публикации ваше приложение будет обрабатывать голосовой или текстовый ввод в диалоговом интерфейсе с конечными пользователями.","shortDescription":"С помощью deepNLUStudio® вы можете создавать, управлять и редактировать диалоговые сценарии в течение нескольких минут, а также создавать расширенные диалоги для управления потоком беседы с клиентами.","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":5,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"deepNLUStudio®","keywords":"deepNLUStudio®, Создавайте, будет, голосовой, обрабатывать, публикации, После, ваше","description":"Создавайте и управляйте семантическими интерпретационными моделями и онтологиями, которые будут способствовать естественному пониманию вашего приложения.\r\nСоздавайте, тестируйте и развертывайте свой виртуальный агент непосредственно из deepNLUStudio®. 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It represents a software architecture for distributed computing, and is a special variant of the more general client-server model, wherein any application may behave as server or client. ESB promotes agility and flexibility with regard to high-level protocol communication between applications. Its primary use is in enterprise application integration (EAI) of heterogeneous and complex service landscapes.\r\nThe concept of the enterprise service bus is analogous to the bus concept found in computer hardware architecture combined with the modular and concurrent design of high-performance computer operating systems. The motivation for the development of the architecture was to find a standard, structured, and general purpose concept for describing implementation of loosely coupled software components (called services) that are expected to be independently deployed, running, heterogeneous, and disparate within a network. ESB is also a common implementation pattern for service-oriented architecture, including the intrinsically adopted network design of the World Wide Web.\r\nNo global standards exist for enterprise service bus concepts or implementations. Most providers of message-oriented middleware have adopted the enterprise service bus concept as de facto standard for a service-oriented architecture. The implementations of ESB use event-driven and standards-based message-oriented middleware in combination with message queues as technology frameworks. However, some software manufacturers relabel existing middleware and communication solutions as ESB without adopting the crucial aspect of a bus concept.\r\nThe ESB is implemented in software that operates between the business applications, and enables communication among them. Ideally, the ESB should be able to replace all direct contact with the applications on the bus, so that all communication takes place via the ESB. To achieve this objective, the ESB must encapsulate the functionality offered by its component applications in a meaningful way. This typically occurs through the use of an enterprise message model. The message model defines a standard set of messages that the ESB transmits and receives. When the ESB receives a message, it routes the message to the appropriate application. Often, because that application evolved without the same message model, the ESB has to transform the message into a format that the application can interpret. A software adapter fulfills the task of effecting these transformations, analogously to a physical adapter.\r\nESBs rely on accurately constructing the enterprise message model and properly designing the functionality offered by applications. If the message model does not completely encapsulate the application functionality, then other applications that desire that functionality may have to bypass the bus, and invoke the mismatched applications directly. Doing so violates the principles of the ESB model, and negates many of the advantages of using this architecture.\r\nThe beauty of the ESB lies in its platform-agnostic nature and the ability to integrate with anything at any condition. It is important that Application Lifecycle Management vendors truly apply all the ESB capabilities in their integration products while adopting SOA. Therefore, the challenges and opportunities for EAI vendors are to provide an integration solution that is low-cost, easily configurable, intuitive, user-friendly, and open to any tools customers choose.","materialsDescription":" <span style=\"font-weight: bold;\">What is an Enterprise Service Bus (ESB)?</span>\r\nAn Enterprise Service Bus (ESB) is a type of software platform known as middleware, which works behind the scenes to aid application-to-application communication. Think of an ESB as a “bus” that picks up information from one system and delivers it to another.\r\nThe term ESB first appeared in 2002, but the technology continues to evolve, driven by the need for ever-emerging internet applications to communicate and interact with one another.\r\n<span style=\"font-weight: bold;\">Why would I want an ESB?</span>\r\nImagine that there are two systems in an organization that needs to exchange data. The technical teams that represent each system plan and implement a solution that allows these systems to communicate. A year or two later, the organization deploys several more systems that need to interact with each other as well as the existing two systems. How can all teams develop and reach an agreement on the best solution?\r\nIt becomes very complicated to manage and maintain one solution as an organization’s IT systems expand. With just 10 systems, there could be 100 different interfaces and scores of disparate technical requirements.\r\nAn ESB provides a secure, scalable and cost-effective infrastructure that enables real-time data exchange among many systems. Data from one system, known as a service provider, can be put on the enterprise service bus as a message, which is sent immediately to a service consumer of the data. If a new system wants to consume this same data, all it has to do is plug into the bus in the same manner.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Enterprise_Service_Bus_Middleware.png"},{"id":221,"title":"Process Automation Middleware","alias":"process-automation-middleware","description":" At the current level of development, process automation is one of the approaches to process management based on the use of information technology. This approach allows the management of operations, data, information and resources through the use of computers and software that reduce the degree of human participation in the process, or completely eliminate it.\r\nThe main goal of automation is to improve the quality of the process. An automated process has more stable characteristics than a manual process. In many cases, process automation can increase productivity, reduce process execution time, reduce cost, increase accuracy and stability of operations.\r\nTo date, process automation has covered many industries and areas of activity: from manufacturing processes to shopping in stores. Regardless of the size and scope of the organization, almost every company has automated processes. The process approach provides for all processes the same principles of automation.\r\nDespite the fact that process automation can be performed at various levels, the principles of automation for all levels and all types of processes will remain the same. These are general principles that set the conditions for the efficient execution of processes in automatic mode and establish rules for automatic process control.\r\nThe basic principles of process automation are: the principle of consistency, the principle of integration, the principle of independence of execution. These general principles are detailed depending on the level of automation under consideration and specific processes. For example, automation of production processes includes principles such as the principle of specialization, the principle of proportionality, the principle of continuity, etc.","materialsDescription":" <span style=\"font-weight: bold; \">What are the levels of process automation?</span>\r\nProcess automation is needed to support management at all levels of the company hierarchy. In this regard, the levels of automation are determined depending on the level of control at which the automation of processes is performed.\r\nManagement levels are usually divided into operational, tactical and strategic.\r\nIn accordance with these levels, automation levels are also distinguished:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Lower level of automation or level of performers.</span></span> At this level, automation of regularly running processes is carried out. Automation of processes is aimed at performing operational tasks (for example, executing a production process), maintaining established parameters (for example, autopilot operation), and maintaining certain operating modes (for example, temperature conditions in a gas boiler).</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Production management level or tactical level.</span></span> Automation of processes of this level ensures the distribution of tasks between various processes of the lower level. Examples of such processes are production management processes (production planning, service planning), processes of managing resources, documents, etc.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Enterprise management level or strategic level.</span></span> Automation of the processes of the enterprise management level provides the solution of analytical and forecast tasks. This level of automation is necessary to support the work of top management of the organization. It is aimed at financial, economic and strategic management.</li></ul>\r\nAutomation of processes at each of these levels is provided through the use of various automation systems (CRM systems, ERP systems, OLAP systems, etc.). All automation systems can be divided into three basic types.\r\nTypes of automation systems include:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">immutable systems.</span></span> These are systems in which the sequence of actions is determined by the configuration of the equipment or process conditions and cannot be changed during the process.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">programmable systems.</span></span> These are systems in which the sequence of actions may vary depending on a given program and process configuration. The selection of the necessary sequence of actions is carried out through a set of instructions that can be read and interpreted by the system.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">flexible (self-adjusting) systems.</span></span> These are systems that are able to carry out the selection of necessary actions in the process of work. Changing the configuration of the process (sequence and conditions of operations) is based on information about the process.</li></ul>\r\nThese types of systems can be applied at all levels of process automation individually or as part of a combined system.\r\n<span style=\"font-weight: bold; \">What are the types of automated processes?</span>\r\nIn each sector of the economy, there are enterprises and organizations that produce products or provide services. All these enterprises can be divided into three groups, depending on their “remoteness” in the natural resource processing chain.\r\nThe first group of enterprises is enterprises that extract or produce natural resources. Such enterprises include, for example, agricultural producers, oil and gas companies.\r\nThe second group of enterprises is enterprises that process natural raw materials. They make products from raw materials mined or produced by enterprises of the first group. Such enterprises include, for example, automobile industry enterprises, steel enterprises, electronic industry enterprises, power plants, etc.\r\nThe third group is service enterprises. Such organizations include, for example, banks, educational institutions, medical institutions, restaurants, etc.\r\nFor all enterprises, we can distinguish common groups of processes associated with the production of products or the provision of services.\r\nThese processes include:\r\n<ul><li>business processes;</li><li>design and development processes;</li><li>production processes;</li><li>control and analysis processes.</li></ul>\r\n<span style=\"font-weight: bold;\">What are the benefits of process automation?</span>\r\nProcess automation can significantly improve the quality of management and product quality. With the implementation of the QMS, automation gives a significant effect and enables the organization to significantly improve its work. However, before deciding on process automation, it is necessary to evaluate the benefits of running processes in an automatic mode.\r\nTypically, process automation provides the following benefits:\r\n<ul><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">the speed of completing repetitive tasks increases.</span></span> Due to the automatic mode, the same tasks can be completed faster because automated systems are more accurate in operations and are not prone to a decrease in performance from the time of work.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">quality of work increases.</span></span> The exclusion of the human factor significantly reduces variations in the execution of the process, which leads to a decrease in the number of errors and, accordingly, increases the stability and quality of the process.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">increases control accuracy.</span></span> Due to the use of information technology in automated systems, it becomes possible to save and take into account a greater amount of process data than with manual control.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">parallel tasks.</span></span> Automated systems allow you to perform several actions at the same time without loss of quality and accuracy. This speeds up the process and improves the quality of the results.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">quick decision making in typical situations.</span></span> In automated systems, decisions related to typical situations are made much faster than with manual control. This improves the performance of the process and avoids inconsistencies in subsequent stages.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Process_Automation_Middleware.png"},{"id":164,"title":"Billing","alias":"billing","description":"Billing is a complex set of programs that allows you to calculate the number of services provided, while the calculations are carried out in a variety of units of measurement. Services are charged and as a result, the client receives a ready invoice, which additionally takes into account all promotions and discounts. The billing covers three main functions: settlement operations, provision of information, financial services.\r\nTypes of billing:\r\n<ul><li>Convergent billing is a carrier-class subsystem that provides mutual settlements with the customer of any network and an arbitrary informative application.</li><li>Automatic billing is a broad definition, including a variety of phenomena: from bank statements to making a payment with a plastic card.</li><li>Deferred billing is called billing, in which the calculation is made on the basis of the calls made.</li><li>Using hot billing reduces the delay in debiting funds, i.e. the speed of interaction with the service provider increases.</li><li>Mobile billing (SMS billing) is a method of electronic payment, in which payment for services is made using a telephone.</li></ul>\r\nCurrency calculation unit between the bank and the world payment system is called the billing currency. When the billing currency is different from the currency of the account, automatic conversion of funds occurs at the bank exchange rate.","materialsDescription":" <span style=\"font-weight: bold;\">Billing tasks:</span>\r\nThe main task of the billing is to provide a full account to the subscriber, information about which is available in this billing network. The billing system is responsible for the transfer of funds from the client’s account to the organization’s account for the services provided.\r\nBilling systems allow complete accounting of each consumer’s account.\r\n<ul><li>revenues;</li><li>costs;</li><li>used services;</li><li>personal tariff plans;</li><li>the amount of funds on the balance sheet;</li><li>discounts and promotions;</li><li>other information of an informative plan.</li></ul>\r\nEffective billing is needed to save time for both operators and consumers. With all this, the billing system should be as transparent as possible, that is, the client must know exactly what services he uses and how much he pays for it. The billing system should be as simple and understandable as possible to consumers, but it should take into account all the parameters set by the service.\r\n<span style=\"font-weight: bold;\">Customer billing options:</span>\r\n<ul><li>automated calculation of the cost of services;</li><li>the ability to quickly receive services;</li><li>automatic debiting of funds (monthly fee and/or payment for services);</li><li> instant receipt of bill details;</li><li>the ability to receive timely information about new services, discounts and so on;</li><li>automatic crediting of bonuses and calculation of discounts.</li></ul>\r\nA properly functioning billing system provides an opportunity for employees of an organization using it to quickly receive information about the use of services and automatically invoice consumers. With the help of billing, it becomes easy to serve customers with bills and coupons, get a quick payment for services. The billing also produces an estimate of consumption, based on this information, the organization can draw conclusions about the demand for various types of services. Thanks to billing, providing clients with advertising information about new promotions, services, and tariffs is automated.\r\nMembers of the billing process:\r\n<ul><li>organizations that produce the necessary resources for the billing process - billing providers;</li><li>organizations that are the primary consumer of billing - cellular operators, Internet telephony operators, Internet providers, providers of digital television and so on;</li><li>ordinary users.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Billing1.png"},{"id":188,"title":"EDI - Electronic Data Interchange","alias":"edi-electronic-data-interchange","description":"Electronic Data Interchange (EDI) is the electronic interchange of business information using a standardized format; a process which allows one company to send information to another company electronically rather than with paper. Business entities conducting business electronically are called trading partners.\r\nMany business documents can be exchanged using EDI, but the two most common are purchase orders and invoices. At a minimum, EDI replaces the mail preparation and handling associated with traditional business communication. However, the real power of EDI is that it standardizes the information communicated in business documents, which makes possible a "paperless" exchange.\r\nThe traditional invoice illustrates what this can mean. Most companies create invoices using a computer system, print a paper copy of the invoice and mail it to the customer. Upon receipt, the customer frequently marks up the invoice and enters it into its own computer system. The entire process is nothing more than the transfer of information from the seller's computer to the customer's computer. EDI makes it possible to minimize or even eliminate the manual steps involved in this transfer.","materialsDescription":" <span style=\"font-weight: bold;\">What does Electronic Data Interchange (EDI) mean?</span>\r\nElectronic data interchange (EDI) is the electronic transmission of structured data by agreed message standards from one computer system to another without human intervention. It is a system for exchanging business documents with external entities.\r\nEDI refers to a family of standards and does not specify transmission methods, which are freely agreed upon by the trading partners.\r\nThe wide adoption of EDI in the business world facilitates efficiency and cost reduction. EDI is used in such diverse business-to-business relationships as:\r\n<ul><li>Interchanges between health care providers and insurers</li><li>Travel and hotel bookings</li><li>Education</li><li>Supply chain management</li><li>Administration</li><li>Tax reporting</li></ul>\r\nEDI is a sequence of messages between two trading partners, either of which may serve as the originator or recipient. The messages are transmitted and received without human intervention. Each message is composed according to a standardized syntax from a sequence of standardized data elements. It is this standardization that makes message assembling, disassembling and processing by the computer possible.\r\nEDI is considered to be a technical representation of a business conversation between two entities, either internal or external. The EDI standards were designed to be independent of communication and software technologies. EDI can be transmitted using any methodology agreed to by the sender and recipient. ","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/EDI__-_Electronic_Data_Interchange.png"},{"id":82,"title":"Unified Communications","alias":"unified-communications","description":"Unified communications (UC) is a framework for integrating various asynchronous and real-time communication tools. The goal of UC is to enhance business communication, collaboration and productivity. Unified communications do not represent a singular technology; rather, it describes a strategy for integrating interconnected systems of enterprise communication devices and applications that can be used in concert or successively.\r\nSome business communication tools - like Internet Protocol (IP) telephony and video conferencing - facilitate real-time communication, also called synchronous communication. Other enterprise communication tools, like email, facilitate asynchronous communication, which takes place at a person's convenience.\r\nIncreasingly, team collaboration tools have emerged to offer messaging-centric workflows and near-real-time communication. These tools also offer voice and video capabilities, API integrations and, ultimately, expound on instant messaging services by providing better UC features.\r\nThe goal of unified communications is to integrate the software that supports synchronous and asynchronous communication, so the end user has easy access to all tools from whatever device is in use.\r\nA unified communications environment is typically supported by one or more back-end systems, often referred to as UC platforms, that facilitate integration among services, as well as the front-end clients that provide access. For example, a web conferencing system would make use of an audio conferencing system - which, in turn, would be built on an underlying IP telephony platform - and a unified messaging client would allow click-to-talk (CTC), click-to-chat or click-to-video functionality.\r\nUC also supports users moving from one mode of communication to another within the same session. For example, a user may start communicating via email but then decide to escalate the interaction to real-time communication, transitioning the session to a voice call with one click and then to a video conference with another click without any disruption.\r\nUnified communications systems and their components can be deployed on premises, in a public or private cloud, or a combination of all three. Cloud-based unified communications is also called UC as a service (UCaaS). An open source project called WebRTC, for example, enables real-time communications to be embedded into web browsers.\r\nHistorically, single-vendor UC environments have demonstrated the tightest integration and compatibility. Interoperability among vendors remains an ongoing challenge in UC, but it has also been mitigated, in part, by partnerships, common protocols and open APIs.","materialsDescription":" <span style=\"font-weight: bold;\">What technology do unified communications have?</span>\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Contrasting unified messaging</span></span>\r\nUnified communications are sometimes confused with unified messaging, but it is distinct. Unified communications refer to both real-time and non-real-time delivery of communications based on the preferred method and location of the recipient; unified messaging culls messages from several sources (such as e-mail, voice mail and faxes), but holds those messages only for retrieval at a later time. Unified communications allow for an individual to check and retrieve an e-mail or voice mail from any communication device at any time. It expands beyond voice mail services to data communications and video services.\r\n<span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">Components</span></span>\r\nWith unified communications, multiple modes of business communications are integrated. Unified communications is not a single product but a collection of elements that include:\r\n<ul><li>Call control and multimodal communications</li><li>Presence</li><li>Instant messaging</li><li>Unified messaging</li><li>Speech access and personal assistant</li><li>Conferencing (audio, Web and video)</li><li>Collaboration tools</li><li>Mobility</li><li>Business process integration (BPI)</li><li>Software to enable business process integration</li></ul>\r\nPresence — knowing where intended recipients are, and if they are available, in real-time — is a key component of unified communications. Unified communications integrate all systems a user might already use, and helps those systems work together in real-time. For example, unified communications technology could allow a user to seamlessly collaborate with another person on a project, even if the two users are in separate locations. The user could quickly locate the necessary person by accessing an interactive directory, engage in a text messaging session, and then escalate the session to a voice call or even a video call.\r\nIn another example, an employee receives a call from a customer who wants answers. Unified communications enable that employee to call an expert colleague from a real-time list. This way, the employee can answer the customer faster by eliminating rounds of back-and-forth e-mails and phone-tag.\r\nThe examples in the previous paragraph primarily describe "personal productivity" enhancements that tend to benefit the individual user. While such benefits can be important, enterprises are finding that they can achieve even greater impact by using unified communications capabilities to transform business processes. This is achieved by integrating UC functionality directly into the business applications using development tools provided by many of the suppliers. Instead of the individual user invoking the UC functionality to, say, find an appropriate resource, the workflow or process application automatically identifies the resource at the point in the business activity where one is needed.\r\nWhen used in this manner, the concept of presence often changes. Most people associate presence with instant messaging (IM "buddy lists") the status of individuals is identified. But, in many business process applications, what is important is finding someone with a certain skill. In these environments, presence identifies available skills or capabilities.\r\nThis "business process" approach to integrating UC functionality can result in bottom-line benefits that are an order of magnitude greater than those achievable by personal productivity methods alone.\r\n<span style=\"font-weight: bold;\">Related concepts</span>\r\nUnified communications & collaboration (UCC) is the integration of various communications methods with collaboration tools such as virtual white boards, real-time audio and video conferencing, and enhanced call control capabilities. Before this fusion of communications and collaboration tools into a single platform, enterprise collaboration service vendors and enterprise communications service vendors offered distinctly different solutions. Now, collaboration service vendors also offer communications services, and communications service providers have developed collaboration tools.\r\nUnified communications & collaboration as a service (UCCaaS) is cloud-based UCC platforms. Compared to premises-based UCC solutions, UCCaaS platforms offer enhanced flexibility and scalability due to the SaaS subscription model.\r\nUnified communications provisioning is the act of entering and configuring the settings for users of phone systems, instant messaging, telepresence, and other collaboration channels. Provisioners refer to this process as making moves, adds, changes, and deletes or MAC-Ds.","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Unified_Communications.png"},{"id":186,"title":"VoIP - Voice over Internet Protocol","alias":"voip-voice-over-internet-protocol","description":"<span style=\"font-weight: bold;\">Voice over Internet Protocol </span>(Voice over IP, VoIP) is a methodology and group of technologies for the delivery of voice communications and multimedia sessions over Internet Protocol (IP) networks, such as the Internet. Other terms commonly associated with VoIP solutions are IP telephony, Internet telephony, broadband telephony, and broadband phone service.\r\nThe term Internet telephony specifically refers to the provisioning of communications services (voice, fax, SMS, voice-messaging) over the public Internet, rather than via the public switched telephone network (PSTN). The steps and principles involved in originating VoIP telephone calls are similar to traditional digital telephony and involve signaling, channel setup, digitization of the analog voice signals, and encoding.\r\nInstead of being transmitted over a circuit-switched network, however, the digital information is packetized, and transmission occurs as IP packets over a packet-switched network. Such transmission entails careful considerations about resource management different from time-division multiplexing (TDM) networks.\r\n\r\n\r\n\r\n","materialsDescription":"<h1 class=\"align-center\"> What are the benefits of VoIP?</h1>\r\n VoIP technology can facilitate tasks and deliver services that might be cumbersome or costly to implement when using traditional PSTN: \r\n<ul><li>More than one phone call can be transmitted on the same broadband phone line. This way, VoIP system can facilitate the addition of telephone lines to businesses without the need for additional physical lines.</li><li>Features that are usually charged extra by telecommunication companies, such as call forwarding, caller ID or automatic redialing, are simple with voice over internet technology.</li><li>Unified Communications are secured with VoIP technology, as it allows integration with other services available on the internet such as video conversation, messaging, etc. </li></ul>\r\n<h1 class=\"align-center\">VoIP programs </h1>\r\nThere are four main types of VoIP technology. Each option has varying levels of complexity which can impact ease of implementation and maintenance.\r\n <span style=\"font-weight: bold;\">Integrated Access</span>\r\nIntegrated access is the VoIP service that most mimics the traditional phone line. With integrated access VoIP, businesses integrate VoIP software and existing, legacy phone systems. This approach lets the business keep its old number and equipment while also gaining access to advanced telecommunications features. \r\n<span style=\"font-weight: bold;\">SIP Trunks</span>\r\n Session Initial Protocol (SIP) transmits voice and video information across a data network, letting VoIP users take advantage of shared lines and increase their communications flexibility. Because all data is sent over a network, businesses can use SIP trunks to replace traditional analog phone networks or use a VoIP gateway to integrate SIP trunking with legacy phone systems. \r\n<span style=\"font-weight: bold;\">Hosted IP PBX</span>\r\n What most people envision when they think of VoIP, this VoIP solution sees a vendor host and operate the private branch exchange, offering unified communications solutions. The business connects to a hosted cloud-based PBX network via its IP network. Phone system hardware is maintained off-site by the hosted IP PBX vendor, and all responsibility for the hardware, software, maintenance, security and upgrades all falls on the hosted PBX provider. \r\n <span style=\"font-weight: bold;\">Managed IP PBX </span>\r\nSimilar to Hosted IP PBX, this version of the unified communication solution is outsourced to a third party that takes care of all management requirements, but instead of phone hardware being off-site, the equipment is housed on-premise by the business. \r\nUnderstanding these different services of VoIP communication can help a business determine the system that best suits its needs. SIP Trunks, for instance, are more attractive to those who want to install their own technology and manage it themselves, while still connecting to VoIP features.\r\n On the other hand, managed IP PBX is a good option for those who don’t have the resources to buy and operate their own VoIP systems. The Hosted IP PBX solution frees the business to select the VoIP management software that works for them and liberates them from the cost and administrative headache of maintaining both voice and data lines and the related carrier partnerships. ","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/VoIP_-_Voice_over_Internet_Protocol.png"},{"id":752,"title":"Voice Recognition","alias":"voice-recognition","description":"<span style=\"font-weight: bold;\">Voice</span> or <span style=\"font-weight: bold;\">speaker recognition </span>is the ability of a machine or program to receive and interpret dictation or to understand and carry out spoken commands. Voice recognition has gained prominence and use with the rise of AI and intelligent assistants, such as Amazon's Alexa, Apple's Siri and Microsoft's Cortana.<br />Voice recognition systems enable consumers to interact with technology simply by speaking to it, enabling hands-free requests, reminders and other simple tasks.\r\n<span style=\"font-weight: bold;\">Voice recognition technology on computers</span> requires that analog audio be converted into digital signals, known as analog-to-digital conversion. For a computer to decipher a signal, it must have a digital database, or vocabulary, of words or syllables, as well as a speedy means for comparing this data to signals. The speech patterns are stored on the hard drive and loaded into memory when the program is run. A comparator checks these stored patterns against the output of the A/D converter - an action called pattern recognition.\r\nIn practice, the size of a speech recognition system effective vocabulary is directly related to the random access memory capacity of the computer in which it is installed. A voice recognition program runs many times faster if the entire vocabulary can be loaded into RAM, as compared with searching the hard drive for some of the matches. \r\nWhile <span style=\"font-weight: bold;\">voice recognition technology </span>originated on PCs, it has gained acceptance in both business and consumer spaces <span style=\"font-weight: bold;\">on mobile devices and in home assistant products</span>. The popularity of smartphones opened up the opportunity to add voice recognition technology into consumer pockets, while home devices, like Google Home and Amazon Echo, brought voice recognition technology into living rooms and kitchens. Voice recognition, combined with the growing stable of internet of things sensors, has added a technological layer to many consumer products that previously lacked any smart capabilities.\r\nAs<span style=\"font-weight: bold;\"> uses for voice recognition technology</span> grow and more users interact with it, the companies implementing speak recognition software will have more data and information to feed into the neural networks that power voice recognition systems, thus improving the capabilities and accuracy of the automatic speech recognition products.<br />The uses for voice recognition have grown quickly as AI, machine learning and consumer acceptance have matured. In-home digital assistants from Google to Amazon to Apple have all implemented voice recognition software to interact with users. The way <span style=\"font-weight: bold;\">consumers use voice recognition technology</span> varies depending on the product, but it can include transcribing speech to text converter, setting up reminders, searching the internet, and responding to simple questions and requests, such as playing music or sharing weather or traffic information.\r\nThe government is also looking for ways to use voice recognition technology and voice identification for security purposes. The National Security Agency (the official U.S. cryptologic organization of the United States Intelligence Community under the Department of Defense) has used voice recognition systems dating back to 2004.<br /><br />","materialsDescription":"<h1 class=\"align-center\"> <span style=\"font-weight: normal;\">What is voice recognition?</span></h1>\r\n<p class=\"align-left\">Voice recognition is an alternative to typing on a keyboard. Put simply, you talk to the computer and your words appear on the screen. The software has been developed to provide a fast method of writing on a computer and can help people with a variety of disabilities. It is useful for people with physical disabilities who often find typing difficult, painful or impossible. Voice-recognition software can also help those with spelling difficulties, including users with dyslexia, because recognised words are almost always correctly spelled.</p>\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What is voice recognition software?</span></h1>\r\n<p class=\"align-left\">Voice-recognition software programmes work by analysing sounds and converting them to text. Once correctly set up, the systems should recognise around 95% of what is said if you speak clearly. Several programmes are available that provide computer speech recognition. These systems have mostly been designed for Windows operating systems, however programmes are also available for Mac OS X. In addition to third-party software, there are also voice-recognition programmes built in to the operating systems of Windows Vista and Windows 7, 8, 10. Most specialist voice applications include the software, a microphone headset, a manual and a quick reference card. You connect the microphone to the computer, either into the soundcard or via a USB or similar connection.</p>\r\n<header><h1 class=\"align-center\"><span style=\"font-weight: normal;\">What are the types of speech recognition?</span></h1></header>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">There are two types of speech recognition.</span> One is called speaker–dependent and the other is speaker–independent. Speaker–dependent software is commonly used for dictation software, while speaker–independent software is more commonly found in telephone applications.<span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Speaker–dependent</span> software works by learning the unique characteristics of a single person's voice, in a way similar to voice recognition. New users must first "train" the voice recognition systems product by speaking to it, so the computer can analyze how the person talks. This often means users have to read a few pages of text to the computer before they can use the voice recogniser.<span style=\"font-weight: bold;\"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold;\">Speaker–independent</span> software is designed to recognize anyone's voice, so no training is involved. This means it is the only real option for applications such as interactive voice response systems — where businesses can't ask callers to read pages of text before using the system. The downside is that speaker–independent software is generally less accurate than speaker–dependent software.</p>\r\n<p class=\"align-left\">Voice recognition engines that are speaker independent generally deal with this fact by limiting the grammars they use. By using a smaller list of recognized words, the speech engine is more likely to correctly recognize what a speaker said.</p>\r\n<p class=\"align-left\">This makes speaker–independent software ideal for most IVR systems, and any application where a large number of people will be using the same system. Speaker dependent software is used more widely in dictation software, where only one person will use the system and there is a need for a large grammar.</p>\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What are the voice recognition applications?</span></h1>\r\n<p class=\"align-left\">The technology is gaining popularity in many areas and has been successful in the following:</p>\r\n<ul><li><span style=\"font-weight: bold;\">Device control. </span>Just saying "OK Google" to an Android phone fires up a system that is all ears to your voice commands.</li><li><span style=\"font-weight: bold;\">Car Bluetooth systems.</span> Many cars are equipped with a system that connects its radio mechanism to your smartphone through Bluetooth. You can then make and receive calls without touching your smartphone, and can even dial numbers by just saying them.</li><li><span style=\"font-weight: bold;\">Voice to speech transcription.</span> In areas where people have to type a lot, some intelligent software captures their spoken words and transcribe them into text. This is current in the certain word processing software. Voice transcription also works with visual voicemail.</li></ul>\r\n<h1 class=\"align-center\"><span style=\"font-weight: normal;\">What is dictation software?</span></h1>\r\n<p class=\"align-left\"></p>\r\nWith the best dictation software, you can compose memos, emails, speeches, and other writing using voice translator speech to text. Some dictation apps also give you the power to control your computer or mobile device with spoken words, too, letting you open apps and navigate the web when you aren't able to or don't want to with your fingers. \r\n<p class=\"align-left\">Dictation apps have a variety of use cases. They're well known among the accessibility community, as not everyone has full and dexterous use of their fingers and hands for typing, moving a mouse, or tapping a touchscreen. They're also quite popular with productivity enthusiasts because once you get comfortable dictating, it's typically faster than typing. Dictating also enables multitasking. You can write while walking, cooking, or even breastfeeding.</p>\r\n<p class=\"align-left\">Some people also find that writing by dictating silences their internal editor. You might be more inclined to get all your thoughts out first and review them later, rather than revising ideas as you form them.</p>\r\n<p class=\"align-left\">In the last few years, dictation software has become more readily available, easier to use, and much less expensive. Also sometimes called voice-to-text apps or voice recognition apps, these tools turn your spoken words into writing on the screen quickly and accurately. </p>\r\n<p class=\"align-left\">Some best voice recognition software are standalone software programs while others are features that come inside other apps or operating systems. Take Google Docs Voice Typing, for example. It's a feature inside Google Docs, rather than a standalone app. You can use it to write in Google Docs as well as edit and format your text.<br /><br /><br /></p>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/icon_Voice_Recognition.png"}],"characteristics":[],"concurentProducts":[],"jobRoles":[],"organizationalFeatures":[],"complementaryCategories":[],"solutions":[],"materials":[],"useCases":[],"best_practices":[],"values":[],"implementations":[]},"studio-creatio":{"id":6880,"logoURL":"https://old.roi4cio.com/fileadmin/user_upload/Creatio_logo.png","logo":true,"scheme":false,"title":"Studio Creatio","vendorVerified":0,"rating":"0.00","implementationsCount":0,"suppliersCount":0,"supplierPartnersCount":0,"alias":"studio-creatio","companyTitle":"Creatio","companyTypes":["vendor"],"companyId":9842,"companyAlias":"creatio","description":"<span style=\"font-weight: bold;\">Studio Creatio</span> is a no-code platform designed to automate workflows and build apps with maximum freedom. It combines a range of no-code tools that allow users to build powerful business applications in hours and minutes instead of weeks. With powerful visual design and drag-and-drop tools, users without deep technical skills can easily create and implement business applications, automated workflows, machine learning and AI models for data-driven decision-making, business rules, etc.","shortDescription":"No-code platform to automate workflows and build applications with a maximum degree of freedom","type":null,"isRoiCalculatorAvaliable":false,"isConfiguratorAvaliable":false,"bonus":100,"usingCount":0,"sellingCount":0,"discontinued":0,"rebateForPoc":0,"rebate":0,"seo":{"title":"Studio Creatio","keywords":"","description":"<span style=\"font-weight: bold;\">Studio Creatio</span> is a no-code platform designed to automate workflows and build apps with maximum freedom. It combines a range of no-code tools that allow users to build powerful business applications in hours and minutes ","og:title":"Studio Creatio","og:description":"<span style=\"font-weight: bold;\">Studio Creatio</span> is a no-code platform designed to automate workflows and build apps with maximum freedom. It combines a range of no-code tools that allow users to build powerful business applications in hours and minutes ","og:image":"https://old.roi4cio.com/fileadmin/user_upload/Creatio_logo.png"},"eventUrl":"","translationId":6880,"dealDetails":null,"roi":null,"price":null,"bonusForReference":null,"templateData":[],"testingArea":"","categories":[{"id":66,"title":"BPM - Business Process Management","alias":"bpm-business-process-management","description":"<span style=\"font-weight: bold; \">Business process management (BPM)</span> is a discipline in operations management in which people use various methods to discover, model, analyze, measure, improve, optimize, and automate business processes. BPM focuses on improving corporate performance by managing business processes. Any combination of methods used to manage a company's business processes is BPM. Processes can be structured and repeatable or unstructured and variable.\r\nAs an approach, BPM sees processes as important assets of an organization that must be understood, managed, and developed to announce and deliver value-added products and services to clients or customers. This approach closely resembles other total quality management or continuous improvement process methodologies. ISO 9000 promotes the process approach to managing an organization.<span style=\"font-weight: bold; \"></span>\r\n<span style=\"font-weight: bold; \">Successfully employing BPM usually involves the following:</span>\r\nOrganizing around outcomes not tasks to ensure the proper focus is maintained\r\nCorrecting and improving processes before (potentially) automating them; otherwise all you’ve done is make the mess run faster\r\nEstablishing processes and assigning ownership lest the work and improvements simply drift away – and they will, as human nature takes over and the momentum peters out\r\nStandardizing processes across the enterprise so they can be more readily understood and managed, errors reduced, and risks mitigated\r\nEnabling continuous change so the improvements can be extended and propagated over time\r\nImproving existing processes, rather than building radically new or “perfect” ones, because that can take so long as to erode or negate any gains achieved\r\n<span style=\"font-weight: bold; \">Business Process Management Software (BPMS)</span> is a process automation tool. It helps you map out your everyday processes to identify and eliminate bottlenecks, control your company’s costs, make your day-to-day processes as efficient as possible, and ensure the effectiveness of the people involved in your processes. A business process management solution to a company’s needs begins with the alignment of business goals with an eye toward creating value through process change initiatives. This alignment leads to a thorough understanding and design of representative processes typically following an industry standard framework \r\nA BPM based foundation provides for complete lifecycle management of business processes, integration across technologies, and imbeds efficiency among people, processes, and technologies.\r\nCommercial business process management tools tend to center on the automation of business processes, essentially moving them from manual pen-and-paper endeavors to effortless automated transactions. BPM software products track how business information is used and then maps the relevant business process and ensure that transactions are done accordingly. This effectively shows where data and process bottlenecks occur and highlights various deficiencies in business processes, including areas where resources are wasted, allowing managers streamline and optimize those processes.\r\n<p class=\"align-center\"><span style=\"font-weight: bold; \">There are three key types of BPMS:</span></p>\r\n<span style=\"font-weight: bold; \">Efficiency Monitors:</span>Monitors every system of the enterprise for inefficiency in the processes by following it from start to finish. BPM program accurately pinpoints weakness and bottlenecks where customers might get frustrated and discontinue transactions and processes.\r\n<span style=\"font-weight: bold; \">Workflow Software:</span> Uses detailed maps of an existing processes and tries to streamline them by optimizing certain steps. BPM workflow software cannot suggest improvements to the process, only optimize it, so this software is only as good as the process itself.\r\n<span style=\"font-weight: bold; \">Enterprise Application Integration Tools:</span> A mixture of efficiency monitors, process and workflow management, EAI software is used to integrate legacy systems into new systems. This software can be used to map points for integrating old and new systems, optimizing their information-gathering characteristics and increasing the efficiency of system communications.<br /><br /><br />","materialsDescription":"<h1 class=\"align-center\">What Are the Types of Business Process Management Software?</h1>\r\n<p class=\"align-center\">There are <span style=\"font-weight: bold; \">three basic kinds</span> of BPM frameworks:</p>\r\n<span style=\"font-weight: bold; \">Horizontal frameworks.</span>They deal with design and development of business processes. They are generally focused on technology and reuse.\r\n<span style=\"font-weight: bold; \">Vertical BPM frameworks.</span> This focuses on specific sets of coordinated tasks, using pre-built templates which can be easily deployed and configured.\r\n<span style=\"font-weight: bold; \">Full-service BPM suites.</span> They have five basic components: Process discovery and project scoping; Process modeling and design; Business rules engine; Workflow engine; Simulation and testing.\r\n<p class=\"align-center\">There are <span style=\"font-weight: bold; \">two types of BPM software</span> as it pertains to deployment:<span style=\"font-weight: bold; \"></span></p>\r\n<p class=\"align-left\"><span style=\"font-weight: bold; \">On-premise</span> business process management (BPM). This has been the norm for most enterprises.</p>\r\n<span style=\"font-weight: bold; \">Software as a Service (SaaS).</span> Advances in cloud computing have led to an increased interest in various “software-on-demand” offerings.\r\n<h1 class=\"align-center\">What are BPM Tools?</h1>\r\n<span style=\"font-weight: bold; \">Business Process Management (BPM) tools</span> are used for automating, measuring and optimizing business processes. BPM automation tools use workflow and collaboration to provide meaningful metrics to business leaders.\r\n<span style=\"font-weight: bold; \">Misconceptions about BPM Tools.</span> There’s a common misconception that BPM tools do not easily demonstrate their benefit to the organization. While the benefit from using BPM tools can be hard to quantify, it can be expressed more effectively in terms of business value.\r\n<span style=\"font-weight: bold; \">Process Management Tools.</span> Tools that allow process managers (those that are responsible for organizing the process or activity) to secure the resources needed to execute it, and measure the results of the activity, providing rewards or corrective feedback when necessary. Process manager tools also allows process managers to change and improve the process whenever possible.\r\n<span style=\"font-weight: bold;\">Process Modeling Tools.</span> Software tools that let managers or analysts create business process diagrams. Simple tools only support diagramming. Professional Process Modeling Tools store each model element in a database so that they can be reused on other diagrams or updated. Many business process improvement software supports simulation or code generation.<br /><br /><br />","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/BPM_-_Business_Process_Management.png"},{"id":221,"title":"Process Automation Middleware","alias":"process-automation-middleware","description":" At the current level of development, process automation is one of the approaches to process management based on the use of information technology. This approach allows the management of operations, data, information and resources through the use of computers and software that reduce the degree of human participation in the process, or completely eliminate it.\r\nThe main goal of automation is to improve the quality of the process. An automated process has more stable characteristics than a manual process. In many cases, process automation can increase productivity, reduce process execution time, reduce cost, increase accuracy and stability of operations.\r\nTo date, process automation has covered many industries and areas of activity: from manufacturing processes to shopping in stores. Regardless of the size and scope of the organization, almost every company has automated processes. The process approach provides for all processes the same principles of automation.\r\nDespite the fact that process automation can be performed at various levels, the principles of automation for all levels and all types of processes will remain the same. These are general principles that set the conditions for the efficient execution of processes in automatic mode and establish rules for automatic process control.\r\nThe basic principles of process automation are: the principle of consistency, the principle of integration, the principle of independence of execution. These general principles are detailed depending on the level of automation under consideration and specific processes. For example, automation of production processes includes principles such as the principle of specialization, the principle of proportionality, the principle of continuity, etc.","materialsDescription":" <span style=\"font-weight: bold; \">What are the levels of process automation?</span>\r\nProcess automation is needed to support management at all levels of the company hierarchy. In this regard, the levels of automation are determined depending on the level of control at which the automation of processes is performed.\r\nManagement levels are usually divided into operational, tactical and strategic.\r\nIn accordance with these levels, automation levels are also distinguished:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Lower level of automation or level of performers.</span></span> At this level, automation of regularly running processes is carried out. Automation of processes is aimed at performing operational tasks (for example, executing a production process), maintaining established parameters (for example, autopilot operation), and maintaining certain operating modes (for example, temperature conditions in a gas boiler).</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Production management level or tactical level.</span></span> Automation of processes of this level ensures the distribution of tasks between various processes of the lower level. Examples of such processes are production management processes (production planning, service planning), processes of managing resources, documents, etc.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">Enterprise management level or strategic level.</span></span> Automation of the processes of the enterprise management level provides the solution of analytical and forecast tasks. This level of automation is necessary to support the work of top management of the organization. It is aimed at financial, economic and strategic management.</li></ul>\r\nAutomation of processes at each of these levels is provided through the use of various automation systems (CRM systems, ERP systems, OLAP systems, etc.). All automation systems can be divided into three basic types.\r\nTypes of automation systems include:\r\n<ul><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">immutable systems.</span></span> These are systems in which the sequence of actions is determined by the configuration of the equipment or process conditions and cannot be changed during the process.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">programmable systems.</span></span> These are systems in which the sequence of actions may vary depending on a given program and process configuration. The selection of the necessary sequence of actions is carried out through a set of instructions that can be read and interpreted by the system.</li><li><span style=\"font-style: italic; \"><span style=\"font-weight: bold; \">flexible (self-adjusting) systems.</span></span> These are systems that are able to carry out the selection of necessary actions in the process of work. Changing the configuration of the process (sequence and conditions of operations) is based on information about the process.</li></ul>\r\nThese types of systems can be applied at all levels of process automation individually or as part of a combined system.\r\n<span style=\"font-weight: bold; \">What are the types of automated processes?</span>\r\nIn each sector of the economy, there are enterprises and organizations that produce products or provide services. All these enterprises can be divided into three groups, depending on their “remoteness” in the natural resource processing chain.\r\nThe first group of enterprises is enterprises that extract or produce natural resources. Such enterprises include, for example, agricultural producers, oil and gas companies.\r\nThe second group of enterprises is enterprises that process natural raw materials. They make products from raw materials mined or produced by enterprises of the first group. Such enterprises include, for example, automobile industry enterprises, steel enterprises, electronic industry enterprises, power plants, etc.\r\nThe third group is service enterprises. Such organizations include, for example, banks, educational institutions, medical institutions, restaurants, etc.\r\nFor all enterprises, we can distinguish common groups of processes associated with the production of products or the provision of services.\r\nThese processes include:\r\n<ul><li>business processes;</li><li>design and development processes;</li><li>production processes;</li><li>control and analysis processes.</li></ul>\r\n<span style=\"font-weight: bold;\">What are the benefits of process automation?</span>\r\nProcess automation can significantly improve the quality of management and product quality. With the implementation of the QMS, automation gives a significant effect and enables the organization to significantly improve its work. However, before deciding on process automation, it is necessary to evaluate the benefits of running processes in an automatic mode.\r\nTypically, process automation provides the following benefits:\r\n<ul><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">the speed of completing repetitive tasks increases.</span></span> Due to the automatic mode, the same tasks can be completed faster because automated systems are more accurate in operations and are not prone to a decrease in performance from the time of work.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">quality of work increases.</span></span> The exclusion of the human factor significantly reduces variations in the execution of the process, which leads to a decrease in the number of errors and, accordingly, increases the stability and quality of the process.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">increases control accuracy.</span></span> Due to the use of information technology in automated systems, it becomes possible to save and take into account a greater amount of process data than with manual control.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">parallel tasks.</span></span> Automated systems allow you to perform several actions at the same time without loss of quality and accuracy. This speeds up the process and improves the quality of the results.</li><li><span style=\"font-style: italic;\"><span style=\"font-weight: bold;\">quick decision making in typical situations.</span></span> In automated systems, decisions related to typical situations are made much faster than with manual control. This improves the performance of the process and avoids inconsistencies in subsequent stages.</li></ul>","iconURL":"https://old.roi4cio.com/fileadmin/user_upload/Process_Automation_Middleware.png"},{"id":217,"title":"Business-to-Business Middleware","alias":"business-to-business-middleware","description":" Middleware is a very broad term that can be defined as a translation layer between different applications and encompasses a number of different technologies, such as message-oriented middleware and database middleware. B2B middleware though has a narrower definition and is concerned first and foremost with routing data from a firm’s business applications to the applications of business partners such as customer, suppliers or banks.\r\nData must be extracted from the source system, which might be an ERP system or securities trading platform or an HR system whether it is an installed system or, as is increasingly the case, a cloud-based system. Data can be extracted using an API or specialized middleware supplied by the enterprise application.\r\nOnce the data has been extracted, it must be correctly formatted so that it can be shared by a completely different system. Typical standard formats are EDI or XML. However, each of these formats has specific variants specific to particular vertical industries. When the data has been formatted, it must then be transmitted to the business partner and, once again, there are a number of different network protocols such as HTTP-baaed AS1 and AS2, or FTP to support B2B integration.","materialsDescription":" <span style=\"font-weight: bold; \">What is Middleware?</span>\r\nMiddleware is the software that connects network-based requests generated by a client to the back-end data the client is requesting. It is a general term for software that serves to "glue together" separate, often complex and already existing programs.\r\nMiddleware programs come in on-premises software and cloud services, and they can be used independently or together, depending upon the use case. While cloud providers bundle middleware into cloud services suites, such as middleware as a service (MWaaS) or integration PaaS (iPaaS), industry researchers note that many businesses still choose independent middleware products that fit their specific needs.\r\n<span style=\"font-weight: bold; \">How middleware works</span>\r\nAll network-based requests are essentially attempts to interact with back-end data. That data might be something as simple as an image to display or a video to play, or it could be as complex as a history of banking transactions.\r\nThe requested data can take on many different forms and may be stored in a variety of ways, such as coming from a file server, fetched from a message queue or persisted in a database. The role of middleware is to enable and ease access to those back-end resources.\r\n<span style=\"font-weight: bold;\">Middleware categories</span>\r\nIn general, IT industry analysts -- such as Gartner Inc. and Forrester Research -- put middleware into two categories: enterprise integration middleware and platform middleware.\r\n<ul><li>Enterprise application integration middleware enables programmers to create business applications without having to custom-craft integrations for each new application. Here, middleware helps software and services components work together, providing a layer of functionality for data consistency and multi-enterprise or B2B integration. Typically, integration middleware provides messaging services, so different applications can communicate using messaging frameworks like Simple Object Access Protocol (SOAP), web services, Representational State Transfer (REST) or JavaScript Object Notation (JSON). Other middleware technologies used in this category include Object Request Brokers (ORBs), data representation technologies like XML and JavaScript Object Notation (JSON), and more.</li></ul>\r\nBusinesses can purchase individual middleware products or on-premises or cloud-based application integration suites.\r\n<ul><li>Platform middleware supports software development and delivery by providing a runtime hosting environment, such as a container, for application program logic. Its primary components are in-memory and enterprise application servers, as well as web servers and content management. Middleware includes web servers, application servers, content management systems and similar tools that support application development and delivery. Generally, embedded or external communications middleware allows different communications tools to work together. These communications tools enable application and service interaction. Resource management services, such as Microsoft Azure Resource Manager, host application program logic at runtime, another key function in platform middleware. Other components include Trusted Platform Modules (TPMs) and in-memory data grids (IMDGs).</li></ul>\r\nPlatform middleware products are also available as specific on-premises or cloud service tools, as well as multitool suites. 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