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Effect of bit-level correlation in stochastic computing

机译:表级相关在随机计算中的影响

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Simple stochastic logic gates can compute complex functions using stochastic computing. A stochastic number is encoded by a unary bit stream where each bit is 0 or 1. The value of the number is represented by the percent of 1's in the number, and is interpreted as a probability. Each bit of the stochastic number can be modeled as a Bernoulli random variable, and each stochastic number can be represented by a binomial random variable. The variance of a stochastic number is given by p(1 - p)/N where N represents the number of bits in the sequence, and p represents the mean value of the number. For long word-lengths, a binomial random variable behaves as a Gaussian random variable. The mean and variance of a two-input stochastic logic gate are dependent on the bit-level correlation of the two inputs. This paper derives closed-form expressions for mean and variance of two-input stochastic logic gates with correlated inputs. An approach to synthesize correlated stochastic bit streams with specified correlation from uncorrelated bit streams is also presented. Using the proposed synthesis method, stochastic logic gates are simulated with correlated inputs. The simulated values of means and variances are shown to be the same as the theoretical values; thus, the closed-form expressions are validated.
机译:简单的随机逻辑门可以使用随机计算计算复杂功能。随机编号由联合比特流编码,其中每个比特为0或1.数字的值由数字中的1的百分比表示,并且被解释为概率。随机数字的每个位可以被建模为Bernoulli随机变量,并且每个随机数字可以由二项式随机变量表示。随机数量的方差由p(1 - p)/ n给出,其中n表示序列中的比特数,并且p表示该数量的平均值。对于长字长度,二项式随机变量表现为高斯随机变量。双输入随机逻辑门的平均值和方差取决于两个输入的比特级相关性。本文源于具有相关输入的两输入随机逻辑门的均值和方差的闭合表达式。还呈现了合成相关随机比特流的方法,其具有与不相关的比特流的指定相关性。使用所提出的合成方法,用相关输入模拟随机逻辑栅极。平均值和差异的模拟值被显示为与理论值相同;因此,验证了闭合形式的表达式。

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