Control-System Stability Under Consecutive Deadline Misses Constraints

M. Maggio, A. Hamann, Eckart Mayer-John, D. Ziegenbein
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引用次数: 29

Abstract

17 This paper deals with the real-time implementation of feedback controllers. In particular, it provides 18 an analysis of the stability property of closed-loop systems that include a controller that can 19 sporadically miss deadlines. In this context, the weakly hard m-K computational model has been 20 widely adopted and researchers used it to design and verify controllers that are robust to deadline 21 misses. Rather than using the m-K model, we focus on another weakly-hard model, the number of 22 consecutive deadline misses, showing a neat mathematical connection between real-time systems 23 and control theory. We formalise this connection using the joint spectral radius and we discuss how 24 to prove stability guarantees on the combination of a controller (that is unaware of deadline misses) 25 and its system-level implementation. We apply the proposed verification procedure to a synthetic 26 example and to an industrial case study. 27
连续最后期限缺失约束下的控制系统稳定性
本文讨论了反馈控制器的实时实现。特别地,它提供了包含可能偶尔错过截止日期的控制器的闭环系统的稳定性分析。在这种情况下,弱硬m-K计算模型已被广泛采用,研究人员用它来设计和验证对最后期限失误具有鲁棒性的控制器。我们没有使用m-K模型,而是将重点放在另一个弱硬模型上,即22个连续的截止日期错过的次数,这显示了实时系统和控制理论之间的简洁数学联系。我们使用联合频谱半径形式化了这种连接,并讨论了如何证明控制器(不知道截止日期错过)25及其系统级实现的组合的稳定性保证。我们将提出的验证程序应用于一个综合实例和一个工业案例研究。27
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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