APRC-based decentralised model predictive control for parallel splitting systems with a matrix annihilation

T. Tran, N. D. That, Q. Ha
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引用次数: 0

Abstract

A decentralised model predictive control strategy for interconnected process systems having parallel-splitting structure based on the asymptotically positive realness constraint (APRC) is presented in this paper. Parallel masking and transform descriptor approaches have been employed in previous work for this type of interconnection processes. A robust control perspective has been brought to light in this work to resolve the issue of multiple subprocess parallelised-ly decoupled in a mixed connection configuration of dynamically coupled units. An annihilation is employed to cancel out the interactive vectors between interconnected processing units. Simulation for a parallel redundant process system in mining industry is provided to demonstrate the effectiveness of the presented robust control approach to parallelised interconnected systems.
矩阵湮灭并联分裂系统的分散模型预测控制
针对具有并行分裂结构的互联过程系统,提出了一种基于渐近正真实性约束(APRC)的分散模型预测控制策略。并行掩蔽和变换描述子方法已经在以前的工作中用于这种类型的互连过程。本文提出了一种鲁棒控制的观点,以解决动态耦合单元的混合连接配置中多子进程并行解耦的问题。湮灭被用来抵消相互连接的处理单元之间的相互作用向量。通过对一个矿业冗余过程并行系统的仿真,验证了所提出的鲁棒控制方法对并行互联系统的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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