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A unified approach for fault tolerance and dynamic power management in fixed-priority real-time embedded systems

机译:固定优先级实时嵌入式系统中用于容错和动态电源管理的统一方法

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This paper investigates an integrated approach for achieving fault tolerance and energy savings in real-time embedded systems. Fault tolerance is achieved via checkpointing, and energy is saved using dynamic voltage scaling (DVS). The authors present a feasibility analysis for checkpointing schemes for a constant processor speed as well as for variable processor speeds. DVS is then carried out on the basis of the feasibility analysis. The authors incorporate important practical issues such as faults during checkpointing, rollback recovery time, memory access time, and energy needed for checkpointing, as well as DVS and context switching overhead. Numerical results based on real-life checkpointing data and processor data sheets show that compared to fault-oblivious methods, the proposed approach significantly reduces power consumption and guarantees timely task completion in the presence of faults.
机译:本文研究了一种用于在实时嵌入式系统中实现容错和节能的集成方法。容错通过检查点实现,并且使用动态电压缩放(DVS)节省了能量。作者介绍了针对恒定处理器速度和可变处理器速度的检查点方案的可行性分析。然后在可行性分析的基础上进行DVS。作者纳入了重要的实际问题,例如检查点期间的故障,回滚恢复时间,内存访问时间和检查点所需的能量,以及DVS和上下文切换开销。基于实际检查点数据和处理器数据表的数值结果表明,与无故障方法相比,该方法可显着降低功耗,并确保在存在故障的情况下及时完成任务。

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