Time-Sensitive Adaptation in CPS through Run-Time Configuration Generation and Verification

M. García-Valls, Diego Perez-Palacin, R. Mirandola
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引用次数: 29

Abstract

The inherent dynamic nature of Cyber Physical Systems (CPS) requires novel mechanisms to support their evolution over their operation life time. Though typically the development of CPS integrates the software (cyber) design with the physical domain, this contribution concentrates mainly on another essential integration plane: The software design level. This paper presents an approach to support the adaptation process of CPS required by their evolution. It is based on the run-time generation of verified system configurations and their analysis to guide the evolution of the system through correct configurations that meet the functional and timing requirements of the new situations. We show its feasibility by presenting and analyzing the results of the execution for a reduced-scale time-sensitive application that employs a complex verification technique to model functional and temporal aspects of the system.
通过运行时配置生成和验证实现CPS的时间敏感适应
网络物理系统(CPS)固有的动态特性需要新的机制来支持其在运行寿命期间的演变。虽然典型的CPS开发将软件(网络)设计与物理领域集成在一起,但这一贡献主要集中在另一个基本集成层面:软件设计层面。本文提出了一种支持CPS进化所需的适应过程的方法。它基于已验证的系统配置的运行时生成及其分析,通过满足新情况的功能和时间需求的正确配置来指导系统的发展。我们通过展示和分析一个小型时间敏感应用程序的执行结果来展示其可行性,该应用程序采用复杂的验证技术来对系统的功能和时间方面进行建模。
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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