基于PTM模型的加法器可靠性近似估计方法

Jianhui Jiang, Guangming Lu, Zhen Wang
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引用次数: 6

摘要

近似加法器已成为近似电路设计的一个热点。然而,一直缺乏适当的方法来评估其可靠性。现有的精确电路解析方法不能直接应用于近似电路,且蒙特卡罗仿真耗时长。常用最坏情况误差、误差距离、平均误差距离和归一化误差距离等指标来描述近似电路的可靠性特性和算法性能,但不能直接计算电路的可靠性。提出了基于概率传递矩阵(PTM)模型的两种近似加法器可靠性估计方法。第一种方法将所有可接受输出的概率之和作为每个输入对应的可接受结果的概率。第二种方法根据可接受输出与精确输出之间的偏差计算可接受结果的概率。将输入向量的概率与相应可接受结果的概率相结合,计算近似加法器的可靠性。实验结果验证了该方法的有效性和准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods for Approximate Adders Reliability Estimation Based on PTM Model
Approximate adders have become a focus of approximate circuit design. However, there has been a lack of appropriate methods to evaluate their reliability. The existing analytical methods for accurate circuits cannot be applied to approximate circuits directly, and the Monte-Carlo simulation is time-consuming. Some metrics such as worst-case error, error distance, mean error distance and normalized error distance have been used to describe the reliability characters and arithmetic performance of approximate circuits, but they cannot directly calculate the reliability. This paper presents two methods for approximate adders reliability estimation based on the probabilistic transfer matrix (PTM) model. The first method takes the sum of the probabilities of all acceptable outputs as the probability of acceptable result corresponding to each input. The second method calculates the probability of acceptable result according to the deviation between the acceptable output and exact output. The reliability of approximate adders is calculated by combining the probabilities of the input vectors and those of the corresponding acceptable results. Experimental results demonstrate the validity and accuracy of the proposed methods.
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