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State assignment for fault tolerant stochastic computing with linear finite state machines

机译:线性有限状态机的容错随机计算状态分配

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Stochastic computing (SC), which is an approximate computation with probabilities, has attracted attention owing to its small area, small power consumption and high fault tolerance. In this paper, we focus on the fault tolerance of SC with linear finite state machines (linear FSMs). We show that state assignment of FSMs considerably affects the fault tolerance of FSM-based SC circuits, and present a Markov model representing the impact of the state assignment on the behavior of faulty FSMs. Furthermore, we propose a heuristic algorithm for appropriate state assignment that can mitigate the influence of the transient faults. Experimental results show that the proposed state assignment can significantly reduce the influence of the faults.
机译:随机计算(SC)是一种具有概率的近似计算,由于其面积小,功耗小和高容错性而备受关注。在本文中,我们重点研究线性有限状态机(线性FSM)对SC的容错性。我们表明,FSM的状态分配在很大程度上影响了基于FSM的SC电路的容错能力,并提出了表示状态分配对故障FSM行为影响的马尔可夫模型。此外,我们为适当的状态分配提出了一种启发式算法,可以减轻暂态故障的影响。实验结果表明,提出的状态分配可以显着减少故障的影响。

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