正式验证ACAS X,一个工业机载防撞系统

Jean-Baptiste Jeannin, Khalil Ghorbal, Yanni Kouskoulas, Ryan Gardner, Aurora C. Schmidt, E. Zawadzki, André Platzer
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引用次数: 33

摘要

由于各种原因,从可伸缩性问题到与以工程为中心的团队的沟通困难,工业系统的正式验证非常具有挑战性。更重要的是,工业系统很少是为验证而设计的,而是为操作需要而设计的。在本文中,我们概述了我们使用混合系统定理证明来正式验证ACAS X的经验,ACAS X是一种计划在2020年左右投入使用的飞机机载防撞系统。这里展示的方法和证明技术是对[8]中已经展示的工作的概述,而ACAS X的评估已经被显著地扩展和更新到系统的最新版本,运行13。本文中介绍的工作是ACAS X开发的一个组成部分,并且是在与ACAS X开发团队的紧密协作下完成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formal verification of ACAS X, an industrial airborne collision avoidance system
Formal verification of industrial systems is very challenging, due to reasons ranging from scalability issues to communication difficulties with engineering-focused teams. More importantly, industrial systems are rarely designed for verification, but rather for operational needs. In this paper we present an overview of our experience using hybrid systems theorem proving to formally verify ACAS X, an airborne collision avoidance system for airliners scheduled to be operational around 2020. The methods and proof techniques presented here are an overview of the work already presented in [8], while the evaluation of ACAS X has been significantly expanded and updated to the most recent version of the system, run 13. The effort presented in this paper is an integral part of the ACAS X development and was performed in tight collaboration with the ACAS X development team.
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