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A Fault-Tolerant Scheduling Algorithm Based on Checkpointing and Redundancy for Distributed Real-Time Systems

机译:基于检查点和冗余的分布式实时系统容错调度算法

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Real-time systems are becoming ever more widely used in life-critical applications, and the need for fault-tolerant scheduling can only grow in the years ahead. This article presents a novel fault tolerance approach for tolerating transient faults in hard real-time systems. The proposed approach combines both checkpointing with rollback and active replication to tolerate several transient faults. Based on this approach, a new static fault-tolerant scheduling algorithm SFTS is presented. It is based on a list of scheduling heuristics which satisfy the application time constraints even in the presence of faults by exploring the spare capacity of available processors in the architecture. Simulation results show the performance and effectiveness of the proposed approach compared to other fault-tolerant approaches. The results reveal that in the presence of multiple transient faults, the average timing overhead of this approach is lower than checkpointing technique. Moreover, the proposed algorithm SFTS achieves better feasibility rate in the presence of multiple transient faults.
机译:实时系统正变得越来越广泛地用于生命攸关的应用程序中,并且对容错调度的需求只会在未来几年内增长。本文提出了一种新颖的容错方法,用于容忍硬实时系统中的瞬态故障。所提出的方法将检查点与回滚和主动复制相结合,以容忍多个瞬时故障。在此基础上,提出了一种新的静态容错调度算法SFTS。它基于一系列调度试探法,通过探索体系结构中可用处理器的备用容量,即使在出现故障时也可满足应用程序时间限制。仿真结果表明,与其他容错方法相比,该方法的性能和有效性。结果表明,在存在多个瞬态故障的情况下,该方法的平均时序开销低于检查点技术。此外,所提出的算法SFTS在存在多个瞬态故障的情况下具有更高的可行性。

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