Power Efficient and High-Accuracy Approximate Multiplier with Error Correction

Author:

Yang Zhixi1,Li Xianbin1ORCID,Yang Jun2

Affiliation:

1. National Innovation Institute of Defense Technology, Academy of Military Science, Beijing 100045, P. R. China

2. The 63rd Research Institute, National University of Defense Technology, Nanjing 210000, P. R. China

Abstract

Approximate arithmetic circuits have been considered as an innovative circuit paradigm with improved performance for error-resilient applications which could tolerant certain loss of accuracy. In this paper, a novel approximate multiplier with a different scheme of partial product reduction is proposed. An analysis of accuracy (measured by error distance, pass rate and accuracy of amplitude) as well as circuit-based design metrics (power, delay and area, etc.) is utilized to assess the performance of the proposed approximate multiplier. Extensive simulation results show that the proposed design achieves a higher accuracy than the other approximate multipliers from the previous works. Moreover, the proposed design has a better performance under comprehensive comparisons taking both accuracy and circuit-related metrics into considerations. In addition, an error detection and correction (EDC) circuit is used to correct the approximate results to accurate results. Compared with the exact Wallace tree multiplier, the proposed approximate multiplier design with the error detection and correction circuit still has up to 15% and 10% saving for power and delay, respectively.

Publisher

World Scientific Pub Co Pte Lt

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Electrical and Electronic Engineering,Hardware and Architecture

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. HEAD: High-Speed Approximate HEterogeneous ADder for Error-Resilient Applications;Journal of Circuits, Systems and Computers;2024-08-31

2. Efficient Design of Modified Wallace Tree Approximate Multipliers Based on Imprecise Compressors for Error-Tolerance Applications;Arabian Journal for Science and Engineering;2023-10-17

3. Designing of an 8 × 8 Multiplier with New Inexact 4:2 Compressors for Image Processing Applications;Circuits, Systems, and Signal Processing;2023-06-10

4. Power efficient VLSI architecture based logistic regression for classification of breast cancer;2023 International Conference on Computer, Electronics & Electrical Engineering & their Applications (IC2E3);2023-06-08

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