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Intelligent Control Interfaces Using Extenics Multidimensional Theory Applied on VIPRO Platforms for Developing the IT INDUSTRY 4.0 Concept

机译:使用可扩展多维理论的智能控制接口应用于VIPRO平台,以发展IT Industry 4.0概念

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The paper presents new concepts and approaches to achieving intelligent control interfaces for solving contradictory problems using Extenics multidimensional theory applied on VIPRO Versatile Intelligent Portable Platforms. VIPRO platform enables developing the IT Industry 4.0 concept through the design, testing and experimentation of new intelligent control interfaces on a classical mechatronic control system without the need to modify its hardware structure, and, from optimal decisions and information fusion between the intelligent control interfaces, resulting in a high degree of versatility and portability to a global communications network. The Cyber-Physical Systems as like a VIPRO Platform’s component, developed through advanced intelligent control interfaces integrate the dynamics of the physical processes with those of the software and networking, providing a powerful environment for modeling, design, and analysis techniques for an integrated whole IT Industry. The portability characteristics results allow test and improve the motion performance of the mechatronic system, and furthermore implement the intelligent control and decision interfaces on their own control system, applying Industry 4.0 components: cognitive computing including intelligence and signal processing, cyber-physical systems, internet of things and cloud computing, exemplified on an Extenics multidimensional control intelligent interfaces.
机译:本文提出了在VIPRO多功能智能便携式平台上应用Extenics多维理论来解决矛盾问题的智能控制界面的新概念和方法。 VIPRO平台可通过在经典的机电一体化控制系统上设计,测试和试验新的智能控制接口来开发IT Industry 4.0概念,而无需修改其硬件结构,并且通过智能控制接口之间的最佳决策和信息融合,导致高度通用性和可移植性到全球通信网络。通过先进的智能控制界面开发的网络物理系统就像VIPRO平台的组件一样,将物理过程的动态与软件和网络的动态集成在一起,为集成的整个IT提供了强大的建模,设计和分析技术环境行业。可移植性结果可测试并改善机电一体化系统的运动性能,并在其自身的控制系统上实施智能控制和决策接口,并应用工业4.0组件:包括智能和信号处理在内的认知计算,网络物理系统,互联网物联网和云计算,以Extenics多维控制智能界面为例。

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