Towards foundational verification of cyber-physical systems

G. Malecha, Daniel Ricketts, Mario M. Alvarez, Sorin Lerner
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引用次数: 15

Abstract

The safety-critical aspects of cyber-physical systems motivate the need for rigorous analysis of these systems. In the literature this work is often done using idealized models of systems where the analysis can be carried out using high-level reasoning techniques such as Lyapunov functions and model checking. In this paper we present VERIDRONE, a foundational framework for reasoning about cyber-physical systems at all levels from high-level models to C code that implements the system. VERIDRONE is a library within the Coq proof assistant enabling us to build on its foundational implementation, its interactive development environments, and its wealth of libraries capturing interesting theories ranging from real numbers and differential equations to verified compilers and floating point numbers. These features make proof assistants in general, and Coq in particular, a powerful platform for unifying foundational results about safety-critical systems and ensuring interesting properties at all levels of the stack.
迈向网络物理系统的基础验证
网络物理系统的安全关键方面激发了对这些系统进行严格分析的需要。在文献中,这项工作通常使用系统的理想化模型来完成,其中分析可以使用高级推理技术(如Lyapunov函数和模型检查)进行。在本文中,我们提出了VERIDRONE,这是一个基本框架,用于从高级模型到实现系统的C代码的所有级别的网络物理系统的推理。VERIDRONE是Coq证明助手中的一个库,使我们能够在其基础实现、交互式开发环境和丰富的库的基础上进行构建,这些库捕获了从实数和微分方程到经过验证的编译器和浮点数等有趣的理论。这些特性使证明助手(尤其是Coq)成为一个强大的平台,用于统一关于安全关键系统的基本结果,并确保堆栈所有级别的有趣属性。
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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