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首页> 外文期刊>IET Cyber-Physical Systems: Theory & Applications >Survey on automated symbolic verification and its application for synthesising cyber-physical systems
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Survey on automated symbolic verification and its application for synthesising cyber-physical systems

机译:关于自动符号验证的调查及其综合网络系统的应用

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摘要

Dependency on the correct operation of embedded systems is rapidly growing, mainly due to their wide range of applications. Their structures are becoming more complex and currently require multi-core processors with scalable shared memory, signal-processing pipelines, and sophisticated software modules to meet increasing computational power, flexibility demands. Additionally, interaction with real-world entities and modern communication capabilities further enhance the mentioned features and give rise to the embedded and cyber-physical systems (ECPS). As a consequence, the reliability of ECPS becomes a key issue during system development. Generally, state-of-the-art verification methodologies for ECPS generate test vectors and use assertion-based verification and high-level processor models, during simulation; however, new challenges arose, such as need for meeting time and energy constraints, handling concurrent software, evaluating implementation-structure choices, ensuring correct system behavior together with physical plants, and supporting new software architectures and legacy designs. This survey deals with the mentioned issues, reviews related literature, and discusses recent advances in symbolic model checking techniques and their applications to control synthesis. Additionally, challenges, problems, and recent advances to ensure correctness and timeliness, regarding ECPS, are discussed. Reliability issues, when developing ECPS, are then considered, as a prominent verification and synthesis application for achieving correct-by-construction systems.
机译:依赖嵌入式系统的正确操作正在快速增长,主要是由于它们的广泛应用。它们的结构变得更加复杂,目前需要具有可扩展共享存储器,信号处理管道和复杂软件模块的多核处理器,以满足增加的计算能力,灵活性需求。此外,与现实世界实体和现代通信能力的互动进一步增强了所提到的特征,并产生嵌入式和网络物理系统(ECP)。因此,ECPS的可靠性成为系统开发期间的关键问题。通常,ECP的最先进的验证方法生成测试向量,并在模拟期间使用基于断言的验证和高级处理器模型;然而,出现了新的挑战,例如需要满足时间和能量限制,处理并发软件,评估实现结构选择,确保正确的系统行为以及物理设备,并支持新的软件架构和遗留设计。该调查处理了上述问题,评论了相关的文献,并讨论了象征性模型检查技术及其应用来控制合成的最新进展。此外,还讨论了确保ECP的正确性和及时性的挑战,问题和最新进展。然后考虑在开发ECP时,作为实现正确施工系统的突出验证和综合应用,可靠性问题。

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