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A design fix to 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设计修正

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In the article Supervisory control for fault-tolerant scheduling of real-time multiprocessor systems with aperiodic tasks', Park and Cho presented a systematic way of computing a largest fault-tolerant and schedulable language that provides information on whether the scheduler (i.e., supervisor) should accept or reject a newly arrived aperiodic task. The computation of such a language is mainly dependent on the task execution model presented in their paper. However, the task execution model is unable to capture the situation when the fault of a processor occurs even before the task has arrived. Consequently, a task execution model that does not capture this fact may possibly be assigned for execution on a faulty processor. This problem has been illustrated with an appropriate example. Then, the task execution model of Park and Cho has been modified to strengthen the requirement that none of the tasks are assigned for execution on a faulty processor.
机译:Park和Cho在“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”一文中,Park和Cho提出了一种计算最大容错和可调度语言的系统方法,该语言可提供有关调度程序(即主管)是否可用的信息。应该接受或拒绝新到达的非定期任务。这种语言的计算主要取决于他们论文中提出的任务执行模型。但是,即使在任务到达之前,如果发生处理器故障,任务执行模型也无法捕获情况。因此,可能会分配一个未捕获此事实的任务执行模型以在故障处理器上执行。已通过适当的示例说明了此问题。然后,对Park and Cho的任务执行模型进行了修改,以增强对没有一个任务要分配在有故障的处理器上执行的要求。

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