An efficient fault-tolerant scheduling algorithm for real-time tasks with precedence constraints in heterogeneous systems

X. Qin, Hong Jiang, D. Swanson
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引用次数: 103

Abstract

In this paper, we investigate an efficient off-line scheduling algorithm in which real-time tasks with precedence constraints are executed in a heterogeneous environment. It provides more features and capabilities than existing algorithms that schedule only independent tasks in real-time homogeneous systems. In addition, the proposed algorithm takes the heterogeneities of computation, communication and reliability into account, thereby improving the reliability. To provide fault-tolerant capability, the algorithm employs a primary-backup copy scheme that enables the system to tolerate permanent failures in any single processor. In this scheme, a backup copy is allowed to overlap with other backup copies on the same processor, as long as their corresponding primary copies are allocated to different processors. Tasks are judiciously allocated to processors so as to reduce the schedule length as well as the reliability cost, defined to be the product of processor failure rate and task execution time. In addition, the time for detecting and handling a permanent fault is incorporated into the scheduling scheme, thus making the algorithm more practical. To quantify the combined performance of fault-tolerance and schedulability, the performability measure is introduced Compared with the existing scheduling algorithms in the literature, our scheduling algorithm achieves an average of 16.4% improvement in reliability and an average of 49.3% improvement in performability.
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异构系统中具有优先约束的实时任务调度算法
本文研究了一种在异构环境下执行具有优先级约束的实时任务的高效离线调度算法。它提供了比在实时同构系统中只调度独立任务的现有算法更多的特性和功能。此外,该算法还考虑了计算、通信和可靠性的异构性,从而提高了可靠性。为了提供容错能力,该算法采用主备份复制方案,使系统能够容忍任何单个处理器中的永久故障。在这种方案中,一个备份副本可以与同一处理器上的其他备份副本重叠,只要它们对应的主副本被分配给不同的处理器。将任务明智地分配给处理器,以减少调度长度和可靠性成本,可靠性成本定义为处理器故障率和任务执行时间的乘积。此外,将永久性故障的检测和处理时间纳入调度方案,使算法更加实用。为了量化容错性和可调度性的综合性能,引入了可执行性度量。与文献中已有的调度算法相比,我们的调度算法可靠性平均提高了16.4%,可执行性平均提高了49.3%。
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