Electromagnetic-based nanonetworks communication in SoC design

O. Yalgashev, M. Bakhouya, A. Chariete, J. Gaber, M. Manier
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引用次数: 1

Abstract

Nanocommunication concepts have emerged as a new paradigm that allows nano-processing-elements to communicate using molecular-, acoustic-, mechanical-, or electromagnetic-based techniques. In this paper, the performances of the electromagnetic-based nanocommunication technique as an on-chip communication fabric for SoCs is evaluated. Simulations have been conducted with 2D mesh-like nano-NoC using two routing techniques, flooding and XY routing, and using several traffic patterns, such as Bit-Reversal, Shuffle, Transpose and Uniform. Performance metrics mainly the latency, the throughput and the energy consumption are evaluated and reported to show the behavior of nano-NoC when varying the number of nano-processing-elements and the transmission range.
基于电磁的纳米网络通信在SoC设计中的应用
纳米通信概念已经作为一种新的范例出现,它允许纳米处理元件使用基于分子、声学、机械或电磁的技术进行通信。本文对基于电磁的纳米通信技术作为片上通信结构的性能进行了评价。使用两种路由技术,泛洪和XY路由,以及几种流量模式,如比特反转、Shuffle、转置和均匀,对2D类网格纳米noc进行了模拟。性能指标主要是延迟、吞吐量和能耗,以显示纳米noc在改变纳米处理元素数量和传输范围时的行为。
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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