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Self-healing strategy for transient fault cell reutilization of embryonic array circuit

机译:胚胎阵列电路瞬态故障单元重用的自愈策略

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Self-healing strategy is a key element in designing the embryonic array circuit. However,all existing strategies of embryonics circuit mainly aim at the permanent faults in cell, and lack of research about transient faults. It would be a huge waste of hardware resource if a cell was permanently eliminated due to a minor local transient fault, and the waste will result in seriously low hardware utilization in the sky environment dominated by transient faults that can repaired by reconfiguration mechanism. In this paper, a new self-healing strategy named fault cell reutilization self-healing strategy (FCRSS), which can reuse the transient fault cell, was proposed. In the new strategy, cell elimination and reconfiguration are bound togetherIn the period of cell elimination process, cells in transparent state due to transient failurecan be reconfigured to achieve reutilization. Methods to design of all the modules are described in detail. Circuit simulation and reliability analysis results prove that the FCRSS can increase hardware availability rate and system reliability at the expense of a small amount of hardware and few of reconfiguration time.
机译:自我修复策略是设计胚胎阵列电路的关键要素。然而,现有的所有胚胎回路策略都主要针对细胞中的永久性缺陷,而对瞬态性缺陷的研究还很缺乏。如果由于微小的局部瞬态故障而永久性地消除了一个单元,将会浪费大量的硬件资源,并且这种浪费将导致在以瞬态故障为主的天空环境中硬件利用率严重降低,而这种故障可以通过重新配置机制进行修复。本文提出了一种新的自我修复策略,称为故障单元重用自我修复策略(FCRSS),该策略可以重用瞬态故障单元。在新策略中,将单元消除和重新配置绑定在一起。在单元消除过程中,由于瞬态故障而处于透明状态的单元可以重新配置以实现重用。详细介绍了所有模块的设计方法。电路仿真和可靠性分析结果证明,FCRSS可以以少量的硬件和很少的重新配置时间为代价,提高硬件的可用性和系统的可靠性。

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