On sufficient and necessary conditions of compositional input-to-state safety for nonlinear systems

IF 2.1 3区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS Systems & Control Letters Pub Date : 2024-07-25 DOI:10.1016/j.sysconle.2024.105886
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Abstract

This paper is concerned with studying the problem of compositional input-to-state safety (ISSf) using input-to-state safe barrier functions (ISSf-BFs) for nonlinear systems given as an interconnection of subsystems. A sufficient condition is proposed to verify ISSf for nonlinear interconnected systems, which allows that only some subsystems are ISSf and the others are not. The idea behind the sufficient condition is to establish ISSf of nonlinear interconnected systems based on ISSf of some lower dimensional subsystems, in conjunction with a general type of interconnection between subsystems. Also, a necessary condition is derived by using additively separable ISSf-BFs, which provides a tool for analyzing ISSf of interconnected subsystems. Meanwhile, the necessary condition indicates that the ISSf problem of the overall nonlinear system can be divided into decoupled subproblems, which is dealt with less computational effort. In particular, a sufficient and necessary condition of compositional ISSf is obtained. Finally, three examples are presented to demonstrate the effectiveness of the theoretical results.

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论非线性系统输入到状态组成安全的充分和必要条件
本文主要研究非线性系统的输入到状态安全(ISSf)问题,使用输入到状态安全障壁函数(ISSf-BFs)来解决作为子系统互连的非线性系统的输入到状态安全问题。为验证非线性互连系统的 ISSf,提出了一个充分条件,即只有部分子系统是 ISSf,而其他子系统不是。充分条件背后的想法是,根据一些低维子系统的 ISSf,结合子系统之间的一般互连类型,建立非线性互连系统的 ISSf。同时,通过使用可加可分的 ISSf-BF,推导出必要条件,为分析互连子系统的 ISSf 提供了工具。同时,必要条件表明,整个非线性系统的 ISSf 问题可以划分为解耦子问题,从而减少计算量。特别是,得到了组成式 ISSf 的充分必要条件。最后,介绍了三个实例来证明理论结果的有效性。
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来源期刊
Systems & Control Letters
Systems & Control Letters 工程技术-运筹学与管理科学
CiteScore
4.60
自引率
3.80%
发文量
144
审稿时长
6 months
期刊介绍: Founded in 1981 by two of the pre-eminent control theorists, Roger Brockett and Jan Willems, Systems & Control Letters is one of the leading journals in the field of control theory. The aim of the journal is to allow dissemination of relatively concise but highly original contributions whose high initial quality enables a relatively rapid review process. All aspects of the fields of systems and control are covered, especially mathematically-oriented and theoretical papers that have a clear relevance to engineering, physical and biological sciences, and even economics. Application-oriented papers with sophisticated and rigorous mathematical elements are also welcome.
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