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Supervisory control for fault-tolerant scheduling of real-time multiprocessor systems with aperiodic tasks

机译:具有非周期性任务的实时多处理器系统的容错调度的监督控制

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摘要

Supervisory control theory is a well-established theoretical framework for feedback control of discrete event systems whose behaviours are described by automata and formal languages. In this article, we propose a formal constructive method for optimal fault-tolerant scheduling of real-time multiprocessor systems based on supervisory control theory. In particular, we consider a fault-tolerant and schedulable language which is an achievable set of event sequences meeting given deadlines of accepted aperiodic tasks in the presence of processor faults. Such a language eventually provides information on whether a scheduler (i.e., supervisor) should accept or reject a newly arrived aperiodic task. Moreover, we present a systematic way of computing a largest fault-tolerant and schedulable language which is optimal in that it contains all achievable deadline-meeting sequences.
机译:监督控制理论是一种成熟的理论框架,用于离散事件系统的反馈控制,其行为由自动机和形式语言描述。在本文中,我们提出了一种基于监督控制理论的实时多处理器系统最优容错调度的形式化构造方法。特别是,我们考虑了一种容错和可调度的语言,它是在处理器故障存在的情况下满足给定非周期性任务的给定期限的一组可实现的事件序列。这种语言最终提供了有关调度程序(即主管)是否应该接受或拒绝新到达的非定期任务的信息。此外,我们提出了一种计算最大的容错和可调度语言的系统方法,该方法是最优的,因为它包含所有可实现的截止日期会议序列。

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