Discrete Hybrid Automata for Safe Cyber-physical System: An Astronautic Case Study

Qiang Wang, Gang Yang, Xingshe Zhou, Yalei Yang
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引用次数: 1

Abstract

Cyber-Physical Systems (CPSs) are interactive, intelligent and distributed-hybrid systems which have computing units embedded in physical environment and widely applied in the safety-critical field. Compared with the traditional embedded hybrid system, the problems of safety, reliability and uncertainty, caused by constant interaction between computing and physical process, are more prominent than ever before. An astronautic case has been taken for example in this paper. Correspondingly, the Discrete Hybrid Automata (DHA) modeling frame and Hybrid System Description Language (HYSDEL) are adopted to build and analyze its behavior model. Besides, combined with the hybrid toolbox, the trajectories of the continuous states and the reachability of system are simulated and analyzed. The usage of the approach to modeling and analysis of CPS has been applied in the scene of lunar rover autonomous walking, which lay a model foundation for the further safety verification.
安全信息物理系统的离散混合自动机:一个航天案例研究
信息物理系统(cps)是将计算单元嵌入物理环境中的交互式、智能化和分布式混合系统,广泛应用于安全关键领域。与传统的嵌入式混合系统相比,由于计算与物理过程的不断交互而产生的安全性、可靠性和不确定性问题比以往任何时候都更加突出。本文以某航天工程为例。相应的,采用离散混合自动机(DHA)建模框架和混合系统描述语言(HYSDEL)建立和分析其行为模型。并结合混合工具箱对系统的连续状态轨迹和可达性进行了仿真分析。将该方法应用于月球车自主行走场景中,为进一步的安全性验证奠定了模型基础。
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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