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Automatic Verification of Parametric Specifications with Complex Topologies

机译:具有复杂拓扑的参数规范的自动验证

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The focus of this paper is on reducing the complexity in verification by exploiting modularity at various levels: in specification, in verification, and structurally. For specifications, we use the modular language CSP-OZ-DC, which allows us to decouple verification tasks concerning data from those concerning durations. At the verification level, we exploit modularity in theorem proving for rich data structures and use this for invariant checking. At the structural level, we analyze possibilities for modular verification of systems consisting of various components which interact. We illustrate these ideas by automatically verifying safety properties of a case study from the European Train Control System standard, which extends previous examples by comprising a complex track topology with lists of track segments and trains with different routes.
机译:本文的重点是通过在各个级别利用模块性来降低验证的复杂性:在规范中,验证和结构上。对于规范,我们使用模块化语言CSP-OZ-DC,这使我们能够将关于与持续时间的数据的验证任务分离。在验证级别,我们在富裕的数据结构中证明的定理中的模块化,并使用此用于不变检查。在结构层面,我们分析了模块化验证的可能性,该系统由相互作用的各种组件组成。我们通过自动验证欧洲列车控制系统标准的案例研究的安全性能来说明这些想法,该概念通过包括复杂的轨道拓扑,其中包含具有不同路线的轨道段和列表的复杂轨迹拓扑。

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