分散控制自适应系统的形式化设计与验证

Paolo Arcaini, E. Riccobene, P. Scandurra
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引用次数: 60

摘要

监控和调整软件系统被管理部分的反馈控制回路被认为是实现软件系统自适应的关键。MAPE-K(基于共享知识的监测-分析-计划-执行)自主控制回路是自适应系统中最具影响力的参考控制模型。由多个相互作用的MAPE组件进行分散自适应控制的复杂分布式自适应系统的设计是主要挑战之一。特别是需要设计和保证分散自适应逻辑功能正确性的形式化方法。本文提出了一个形式化建模和分析自适应系统的框架。我们提供了一种称为自适应抽象状态机的形式,它利用多智能体抽象状态机的概念,根据MAPE- k控制回路指定分布式和分散的自适应控制,以及MAPE模式的可能实例。我们支持验证和验证技术,以发现意外的干扰MAPE- k循环,并确保在执行自适应时MAPE组件交互的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formal Design and Verification of Self-Adaptive Systems with Decentralized Control
Feedback control loops that monitor and adapt managed parts of a software system are considered crucial for realizing self-adaptation in software systems. The MAPE-K (Monitor-Analyze-Plan-Execute over a shared Knowledge) autonomic control loop is the most influential reference control model for self-adaptive systems. The design of complex distributed self-adaptive systems having decentralized adaptation control by multiple interacting MAPE components is among the major challenges. In particular, formal methods for designing and assuring the functional correctness of the decentralized adaptation logic are highly demanded. This article presents a framework for formal modeling and analyzing self-adaptive systems. We contribute with a formalism, called self-adaptive Abstract State Machines, that exploits the concept of multiagent Abstract State Machines to specify distributed and decentralized adaptation control in terms of MAPE-K control loops, also possible instances of MAPE patterns. We support validation and verification techniques for discovering unexpected interfering MAPE-K loops, and for assuring correctness of MAPE components interaction when performing adaptation.
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