Design of wave-parallel computing circuits for densely connected architectures

Y. Yuminaka, T. Aoki, T. Higuchi
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引用次数: 6

Abstract

Investigates new architecture LSIs based on wave-parallel computing (WPC) to address the interconnection problems in highly parallel VLSI systems. The underlying concept is frequency multiplexing of digital signals, which enables the utilization of the parallelism of electrical (or optical) waves for parallel processing. The key to success with WPC architecture lies in finding efficient implementation of multi-wave selection function. The paper proposes a multi-wave selection circuit based on coherent detection of modulated waves. The proposed method has potential advantage of high degree of multiplexing and real-time-variable selectivity. Also, its application to the densely connected WPC architecture for minimum-latency image processing is discussed with emphasis on the reduction in the number of interconnections.<>
面向密集连接结构的波并行计算电路设计
研究基于波并行计算(WPC)的新型lsi架构,以解决高度并行VLSI系统中的互连问题。其基本概念是数字信号的频率复用,这使得利用电波(或光波)的并行性进行并行处理成为可能。WPC架构成功的关键在于找到有效实现多波选择功能的方法。提出了一种基于调制波相干检测的多波选择电路。该方法具有高复用度和实时可变选择性的潜在优势。此外,本文还讨论了其在密集连接的WPC架构中用于最小延迟图像处理的应用,重点讨论了减少互连数量的问题。
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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