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Combined time and information redundancy for SEU-tolerance in energy-efficient real-time systems

机译:结合时间和信息冗余以实现高能效实时系统中的SEU容忍

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Recently, the tradeoff between energy consumption and fault-tolerance in real-time systems has been highlighted. These works have focused on dynamic voltage scaling (DVS) to reduce dynamic energy dissipation and on-time redundancy to achieve transient-fault tolerance. While the time redundancy technique exploits the available slack-time to increase the fault-tolerance by performing recovery executions, DVS exploits slack-time to save energy. Therefore, we believe there is a resource conflict between the time-redundancy technique and DVS. The first aim of this paper is to propose the use of information redundancy to solve this problem. We demonstrate through analytical and experimental studies that it is possible to achieve both higher transient fault-tolerance [tolerance to single event upsets (SEUs)] and less energy using a combination of information and time redundancy when compared with using time redundancy alone. The second aim of this paper is to analyze the interplay of transient-fault tolerance (SEU-tolerance) and adaptive body biasing (ABB) used to reduce static leakage energy, which has not been addressed in previous studies. We show that the same technique (i.e., the combination of time and information redundancy) is applicable to ABB-enabled systems and provides more advantages than time redundancy alone.
机译:最近,实时系统中的能耗与容错之间的权衡已得到强调。这些工作集中于动态电压调整(DVS),以减少动态能量耗散和准时冗余,以实现瞬态故障容限。时间冗余技术通过执行恢复执行来利用可用的空闲时间来提高容错能力,而DVS则利用空闲时间来节省能量。因此,我们认为时间冗余技术与DVS之间存在资源冲突。本文的首要目的是提出使用信息冗余来解决这个问题。通过分析和实验研究,与单独使用时间冗余相比,结合使用信息和时间冗余,可以实现更高的瞬态容错性(对单事件翻转的容忍度)和更少的能量。本文的第二个目的是分析瞬态故障容限(SEU-tolerance)和自适应体偏置(ABB)的相互作用,以减少静态泄漏能量,这在以前的研究中并未解决。我们表明相同的技术(即时间和信息冗余的组合)适用于启用ABB的系统,并且比单独的时间冗余具有更多优势。

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