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Electromagnetic-based nanonetworks communication in SoC design

机译:基于电磁的纳米算术在SoC设计中的沟通

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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.
机译:纳入概念已成为一种新的范式,允许纳米处理元件使用分子,声学,机械或电磁基技术进行通信。本文评估了基于电磁的纳米通信技术的性能作为SOCS的片上通信织物。使用两种路由技术,洪水和XY路由以及使用多个流量模式,如逆转,洗牌,转置和均匀,仿真使用了2D网格纳米NoC进行了模拟。性能指标主要是延迟,吞吐量和能量消耗进行了评估和据报道,以在改变纳米加工元件的数量和传输范围内时显示纳米NOC的行为。

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