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Measurement and analysis of workload effects on fault latency in real-time systems

机译:测量和分析工作负载对实时系统中的故障延迟的影响

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The authors demonstrate the need to address fault latency in highly reliable real-time control computer systems. It is noted that the effectiveness of all known recovery mechanisms is greatly reduced in the presence of multiple latent faults. The presence of multiple latent faults increases the possibility of multiple errors, which could result in coverage failure. The authors present experimental evidence indicating that the duration of fault latency is dependent on workload. A synthetic work generator is used to vary the workload, and a hardware fault injector is applied to inject transient faults of varying durations. This method makes it possible to derive the distribution of fault latency duration. Experimental results obtained from the fault-tolerant multiprocessor at the NASA Airlab are presented and discussed.
机译:作者证明了在高度可靠的实时控制计算机系统中解决故障延迟的需求。注意,在存在多个潜在故障的情况下,所有已知恢复机制的有效性都会大大降低。多个潜在故障的存在增加了多个错误的可能性,这可能导致覆盖失败。作者提供的实验证据表明,故障潜伏期的持续时间取决于工作量。合成功发生器用于改变工作量,硬件故障注入器用于注入持续时间不同的瞬态故障。该方法可以导出故障等待时间的分布。介绍并讨论了从NASA Airlab的容错多处理器获得的实验结果。

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