首页> 外文会议>Real-Time Systems Symposium, 1997. Proceedings., The 18th IEEE >Adaptive fault tolerance and graceful degradation under dynamic hard real-time scheduling
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Adaptive fault tolerance and graceful degradation under dynamic hard real-time scheduling

机译:动态硬实时调度下的自适应容错和适度降级

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Static redundancy allocation is inappropriate in hard real-time systems that operate in variable and dynamic environments, (e.g., radar tracking, avionics). Adaptive fault tolerance (AFT) can assure adequate reliability of critical modules, under temporal and resource constraints, by allocating just as much redundancy to less critical modules as can be afforded thus gracefully reducing their resource requirement. We propose a mechanism for supporting adaptive fault tolerance in a real-time system. Adaptation is achieved by choosing a suitable redundancy strategy for a dynamically arriving computation to assure required reliability and to maximize the potential for fault tolerance while ensuring that deadlines are met. The proposed approach is evaluated using a real-life workload simulating radar tracking software in AWACS early warning aircraft. The results demonstrate that our technique outperforms static fault tolerance strategies in terms of tasks meeting their timing constraints. Further, we show that the gain in this timing-centric performance metric does not reduce the fault tolerance of the executing task below a predefined minimum level. Overall, the evaluation indicates that the proposed ideas result in a system that dynamically provides QoS guarantees along the fault-tolerance dimension.
机译:静态冗余分配不适用于在可变和动态环境(例如,雷达跟踪,航空电子设备)中运行的硬实时系统。自适应容错(AFT)可以在时间和资源限制下,通过为关键程度较低的模块分配尽可能多的冗余,从而确保关键模块的足够可靠性,从而优雅地减少其资源需求。我们提出了一种在实时系统中支持自适应容错的机制。通过为动态到达的计算选择合适的冗余策略来实现自适应,以确保所需的可靠性并最大程度地提高容错能力,同时确保满足最后期限。在AWACS预警机中,使用现实生活中的工作量模拟雷达跟踪软件对提出的方法进行了评估。结果表明,在满足其时序约束的任务方面,我们的技术优于静态容错策略。此外,我们表明,这种以时间为中心的性能度量标准的增益不会降低执行任务的容错能力,使其低于预定义的最小级别。总体而言,评估表明,所提出的思想导致了一个系统,该系统可以动态地在容错维度上提供QoS保证。

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