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MDM: A mode diagram modeling framework for periodic control systems

科研成果: 期刊稿件会议文章同行评审

摘要

Periodic control systems used in spacecrafts and automotives are usually period-driven and can be decomposed into different modes with each mode representing a system state observed from outside. Such systems may also involve intensive computing in their modes. Despite the fact that such control systems are widely used in the above-mentioned safety-critical embedded domains, there is lack of domain-specific formal modeling languages for such systems in the relevant industry. To address this problem, we propose a formal visual modeling framework called MDM as a concise and precise way to specify and analyze such systems. To capture the temporal properties of periodic control systems, we provide, along with MDM, a property specification language based on interval logic for the description of concrete temporal requirements the engineers are concerned with. The statistical model checking technique can then be used to verify the MDM models against the desired properties. To demonstrate the viability of our approach, we have applied our modeling framework to some real-life case studies from industry and helped detect two design defects for some spacecraft control system.

源语言英语
页(从-至)135-149
页数15
期刊Electronic Proceedings in Theoretical Computer Science, EPTCS
105
DOI
出版状态已出版 - 29 12月 2012
活动1st International Workshop on Formal Techniques for Safety-Critical Systems, FTSCS 2012 - Kyoto, 日本
期限: 12 11月 2012 → …

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