From Dissipativity Theory to Compositional Construction of Control Barrier Certificates

Ameneh Nejati, Majid Zamani
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引用次数: 1

Abstract

This paper proposes a compositional framework based on dissipativity approaches to construct control barrier certificates for networks of continuous-time stochastic hybrid systems. The proposed scheme leverages the structure of the interconnection topology and a notion of so-called control storage certificates to construct control barrier certificates compositionally. By utilizing those certificates, one can compositionally synthesize state-feedback controllers for interconnected systems enforcing safety specifications over a finite-time horizon. In particular, we leverage dissipativity-type compositionality conditions to construct control barrier certificates for interconnected systems based on corresponding control storage certificates computed for subsystems. Using those constructed control barrier certificates, one can quantify upper bounds on probabilities that interconnected systems reach certain unsafe regions in finite-time horizons. We employ a systematic technique based on the sum-of-squares optimization program to search for storage certificates of subsystems together with their corresponding safety controllers. We demonstrate our proposed results by applying them to a temperature regulation in a circular building containing 1000 rooms. To show the applicability of our approaches to dense networks, we also apply our proposed techniques to a fully-interconnected network .
从耗散理论到控制屏障证书的构成
本文提出了一种基于耗散性方法的组合框架,用于构造连续时间随机混合系统网络的控制屏障证书。该方案利用互连拓扑结构和控制存储证书的概念组合构造控制屏障证书。通过利用这些证书,可以合成状态反馈控制器,用于在有限时间范围内执行安全规范的互联系统。特别是,我们利用耗散型组合性条件,在计算子系统相应的控制存储证书的基础上,构建互联系统的控制屏障证书。使用这些构造的控制屏障证书,可以量化互连系统在有限时间范围内到达某些不安全区域的概率上界。我们采用了基于平方和优化程序的系统技术来搜索子系统的存储证书以及相应的安全控制器。我们通过将其应用于包含1000个房间的圆形建筑的温度调节来证明我们提出的结果。为了证明我们的方法对密集网络的适用性,我们还将我们提出的技术应用于完全互联的网络。
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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