Memristor-Based Discrete Fourier Transform for Improving Performance and Energy Efficiency

R. Cai, Ao Ren, Yanzhi Wang, Bo Yuan
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引用次数: 5

Abstract

Memristor has emerged as one of the most promising candidates for the fundamental device in the beyond-CMOS era. With their unique advantage on implementing low-power high-speed matrix multiplication, memristors have shown great and vast potentiality in many specific applications. This paper, for the first time, investigates the hardware design of DFT using memristors. Two implementations of DFT using memristors have been presented for effectively trading-off between hardware complexity and computing speed. Simulation results show that as compared to the conventional CMOS-based design, the proposed memristor-based design enables significant reduction in computation latency and improvement in power efficiency with very low inaccuracy. Simulation results show that the proposed memristor-based implementation could reach up to 10X improvement in speed and 109.8X reduction in power efficiency compared to CMOS-based design.
基于忆阻器的离散傅里叶变换提高性能和能源效率
忆阻器已成为超越cmos时代基础器件中最有前途的候选器件之一。忆阻器以其在实现低功耗高速矩阵乘法方面的独特优势,在许多特定应用中显示出巨大的潜力。本文首次研究了用忆阻器实现DFT的硬件设计。为了有效地平衡硬件复杂度和计算速度,提出了两种使用忆阻器实现DFT的方法。仿真结果表明,与传统的基于cmos的设计相比,基于忆阻器的设计显著降低了计算延迟,提高了功率效率,且误差很小。仿真结果表明,与基于cmos的设计相比,基于忆阻器的实现速度提高了10倍,功耗降低了109.8倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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