A Hybrid Programming Language for Formal Modeling and Verification of Hybrid Systems

Eduard Kamburjan, Stefan Mitsch, Reiner Hähnle
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引用次数: 4

Abstract

Designing and modeling complex cyber-physical systems (CPS) faces the double challenge of combined discrete-continuous dynamics and concurrent behavior. Existing formal modeling and verification languages for CPS expose the underlying proof search technology. They lack high-level structuring elements and are not efficiently executable. The ensuing modeling gap renders formal CPS models hard to understand and to validate. We propose a high-level programming -based approach to formal modeling and verification of hybrid systems as a hybrid extension of an Active Objects language. Well-structured hybrid active programs and requirements allow automatic, reachability-preserving translation into differential dynamic logic, a logic for hybrid (discrete-continuous) programs. Verification is achieved by discharging the resulting formulas with the theorem prover KeYmaera X. We demonstrate the usability of our approach with case studies.
用于混合系统形式化建模与验证的混合编程语言
复杂网络物理系统(CPS)的设计和建模面临着离散-连续动力学组合和并发行为的双重挑战。现有的用于CPS的形式化建模和验证语言暴露了底层的证明搜索技术。它们缺乏高级结构元素,并且不能有效地执行。随之而来的建模差距使正式的CPS模型难以理解和验证。我们提出了一种基于高级编程的混合系统形式化建模和验证方法,作为活动对象语言的混合扩展。结构良好的混合主动程序和需求允许自动、可达性保持转换为微分动态逻辑,这是混合(离散-连续)程序的逻辑。验证是通过使用定理证明者KeYmaera x来实现的。我们通过案例研究证明了我们方法的可用性。
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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