Input/output corrective control of switched asynchronous sequential machines under arbitrary switching

IF 3.7 2区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS Nonlinear Analysis-Hybrid Systems Pub Date : 2024-04-04 DOI:10.1016/j.nahs.2024.101489
Jung-Min Yang , Seong Woo Kwak
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Abstract

This article presents a novel modeling and corrective control of switched asynchronous sequential machines (ASMs) with input/output submachines. In particular, the considered switched ASM is harnessed by the external switching signal that provokes arbitrary change of the mode or submachine. The existence of the external switching signal imposes unpredictable state drift opposite to model matching as well as ambiguity in determining the active submachine. We first present a state observer for state observation and identification of the active submachine. Based on the information delivered by the observer, we address the existence condition and design procedure for a corrective controller that matches the stable-state behavior of the closed-loop system to that of a reference model for every possible switching sequence. To demonstrate the validity and applicability of the proposed control scheme, we conduct hardware experiments on field-programmable gate array (FPGA) circuits for a space-borne digital system and provide convincing experimental results.

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任意开关下开关式异步连续机器的输入/输出纠正控制
本文介绍了具有输入/输出子机的开关式异步连续机械(ASM)的新型建模和修正控制。特别是,所考虑的开关式 ASM 受外部开关信号的控制,外部开关信号会引发模式或子机器的任意变化。外部开关信号的存在带来了与模型匹配相反的不可预测的状态漂移,以及在确定活动子机械时的模糊性。我们首先提出了一种状态观测器,用于状态观测和活动子机械的识别。根据观测器提供的信息,我们探讨了纠正控制器的存在条件和设计程序,该控制器可在每种可能的开关序列中将闭环系统的稳定状态行为与参考模型的稳定状态行为相匹配。为了证明所提控制方案的有效性和适用性,我们在现场可编程门阵列(FPGA)电路上为一个空间数字系统进行了硬件实验,并提供了令人信服的实验结果。
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来源期刊
Nonlinear Analysis-Hybrid Systems
Nonlinear Analysis-Hybrid Systems AUTOMATION & CONTROL SYSTEMS-MATHEMATICS, APPLIED
CiteScore
8.30
自引率
9.50%
发文量
65
审稿时长
>12 weeks
期刊介绍: Nonlinear Analysis: Hybrid Systems welcomes all important research and expository papers in any discipline. Papers that are principally concerned with the theory of hybrid systems should contain significant results indicating relevant applications. Papers that emphasize applications should consist of important real world models and illuminating techniques. Papers that interrelate various aspects of hybrid systems will be most welcome.
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