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Compact and accurate stochastic circuits with shared random number sources

机译:具有共享随机数源的紧凑型和准确的随机电路

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Stochastic computing, which is an approximate computation with probabilities (called stochastic numbers), draws attention as an alternative method of deterministic computing. In this paper, we discuss a design of compact and accurate stochastic circuits. Stochastic circuits are known as a way to stochastically compute complex calculation at low hardware cost, while stochastic number generators (SNGs), which are used for converting deterministic numbers into stochastic numbers, account for a large fraction of the circuits. To reduce such SNGs in stochastic circuits, we propose a technique to share random number generators with several SNGs. This sharing method employs circular shift of the output of LFSRs to reduce the correlation between stochastic numbers. We also discuss the influence of input correlation around a multiplexer, which is a scaled adder for stochastic computing, so as to avoid over reducing the input correlation. Application of the proposed techniques to two stochastic image processing shows the reduction in the size of SNGs without greatly sacrificing accuracy.
机译:随机计算,这是具有概率的近似计算(称为随机数字),将注意力作为确定性计算的替代方法。在本文中,我们讨论了紧凑型和准确的随机电路的设计。随机电路被称为以低硬件成本随机计算复杂计算的方式,而随机数发生器(SNGS),其用于将确定性数字转换为随机数字,考虑到大部分电路。为了减少随机电路中的SNG,我们提出了一种用几种SNG共享随机数发生器的技术。该共享方法采用LFSR的输出的圆形移位,以降低随机数字之间的相关性。我们还讨论了多路复用器周围输入相关器的影响,这是用于随机计算的缩放加法器,以避免降低输入相关性。将所提出的技术应用于两个随机图像处理,显示出SNG的大小的减少,而不是极大地牺牲精度。

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