用于随机计算部门的低成本、高效率比特流生成器

IF 2.1 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Mehran Shoushtari Moghadam;Sercan Aygun;Sina Asadi;M. Hassan Najafi
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引用次数: 0

摘要

与其他算术电路相比,随机计算(SC)除法电路近年来因其在精度权衡下的低复杂度而变得越来越重要。在传统的基于二进制的硬件系统中,设计除法电路已经非常复杂。开发精确高效的 SC 除法电路是一个有待解决的研究课题。之前的研究通过使用多路复用器和 JK 触发器单元提出了不同的 SC 除法电路,这些电路可能需要相关或不相关的输入比特流。本研究的主要核心是探索一种专为 SC 除法电路设计的经济高效的位流发生器。结合这一目标,我们评估了多个位流发生器的性能,并分析了相关性对 SC 除法的影响。我们比较了不同设计的精度和硬件成本。此外,我们还讨论了通过 Van der Corput(VDC)序列的 2 次方(powers-of-2 Van der Corput)设计的低成本、高能效比特流发生器。在测试过的序列发生器中,我们使用 VDC 序列取得了最佳结果。我们的评估结果表明,基于 VDC 的新型设计具有良好的输出效果,与传统位流发生器相比,在相同精度水平下,面积-延迟乘积减少了 15.5%,能耗节省了 18.05%。值得注意的是,我们的研究表明,与最先进的技术相比,采用建议的生成器可提高精度。我们通过一项图像处理案例研究验证了所提出的架构,获得了较高的 PSNR 和结构相似度值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Cost and Highly-Efficient Bit-Stream Generator for Stochastic Computing Division
Stochastic computing (SC) division circuits have gained importance in recent years compared to other arithmetic circuits due to their low complexity as a result of an accuracy tradeoff. Designing a division circuit is already complex in conventional binary-based hardware systems. Developing an accurate and efficient SC division circuit is an open research problem. Prior work proposed different SC division circuits by using multiplexers and JK-flip-flop units, which may require correlated or uncorrelated input bit-streams. This study is primarily centered on exploring a cost-effective and highly efficient bit-stream generator specifically designed for SC division circuits. In conjunction with this objective, we assess the performance of multiple bit-stream generators and analyze the impact of correlation on SC division. We compare different designs in terms of accuracy and hardware cost. Moreover, we discuss a low-cost and energy-efficient bit-stream generator via powers-of-2 Van der Corput (VDC) sequences. Among the tested sequence generators, our best results were achieved with VDC sequences. Our evaluation results demonstrate that the novel VDC-based design yields promising outputs, resulting in a 15.5% reduction in the area-delay product and an 18.05% saving in energy consumption for the same accuracy level compared to conventional bit-stream generators. Significantly, our investigation reveals that employing the proposed generator improves the precision compared to the state-of-the-art. We validate the proposed architecture with an image processing case study, achieving high PSNR and structural similarity values.
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来源期刊
IEEE Transactions on Nanotechnology
IEEE Transactions on Nanotechnology 工程技术-材料科学:综合
CiteScore
4.80
自引率
8.30%
发文量
74
审稿时长
8.3 months
期刊介绍: The IEEE Transactions on Nanotechnology is devoted to the publication of manuscripts of archival value in the general area of nanotechnology, which is rapidly emerging as one of the fastest growing and most promising new technological developments for the next generation and beyond.
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