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RCS Based Hardware-in-the-loop Intelligent System Design and Performance Measurement

机译:基于RCS的硬件内智能系统设计和性能测量

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In this paper, we present an approach to the design of intelligent systems based on RCS architecture that allows seamless transition from modeling and non real-time simulation to real-time simulation and subsequent hardware-in-the-loop testing. This methodology provides a unified, structured, hierarchical environment, so that "analytical design " of intelligence can be seamlessly transferred to machine/manufacturing process intelligence. As part of the research, we present two case studies wherein we demonstrate how RCS architecture and functionality can be incorporated using commercial software and hardware environment. The enhancements to commercial software in the areas of (i) knowledge hierarchy, (ii) open, modular, and structured programming using RCS architecture, (iii) minimal software programming, (iv) advanced control design methodologies, and (v) efficient numerical schemes for optimization provide a framework for comparing qualitative and quantitative measures of performance improvement over traditional industrial automation hardware that uses PID cards, programmable logic controllers (PLCs), and other microprocessor based controllers with limited functionality.
机译:在本文中,我们提出了一种基于RCS架构的智能系统设计方法,允许从建模和非实时模拟到实时仿真和随后的硬件循环测试的智能系统。该方法提供了统一,结构化的分层环境,因此智能的“分析设计”可以无缝转移到机器/制造过程智能。作为研究的一部分,我们提出了两个案例研究,其中我们展示了如何使用商业软件和硬件环境结合RCS架构和功能。在(i)知识层次结构的区域中的商业软件的增强,(ii)使用RCS架构,(iii)最小的软件编程,(iv)高级控制设计方法,(v)高效数值,开放,模块化和结构化编程优化计划提供了一种框架,用于比较使用PID卡,可编程逻辑控制器(PLC)和基​​于其他基于微处理器的控制器的传统工业自动化硬件的性能改进的定性和定量措施。

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