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QuT: A low-power optical Network-on-Chip

机译:QuT:低功耗光片上网络

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To enable the adoption of optical Networks-on-Chip (NoCs) and allow them to scale to large systems, they must be designed to consume less power and energy. Therefore, optical NoCs must use a small number of wavelengths, avoid excessive insertion loss and reduce the number of microring resonators. We propose the Quartern Topology (QuT), a novel low-power all-optical NoC. We also propose a deterministic wavelength routing algorithm based on Wavelength Division Multiplexing that allows us to reduce the number of wavelengths and microring resonators in optical routers. The key advantages of QuT network are simplicity and lower power consumption. We compare QuT against three alternative all-optical NoCs: optical Spidergon, λ-router and Corona under different synthetic traffic patterns. QuT demonstrates good scalability with significantly lower power and competitive latency. Our optical topology reduces power by 23%, 86.3% and 52.7% compared with 128-node optical Spidergon, λ-router and Corona, respectively.
机译:为了能够采用光学片上网络(NoC)并使它们能够扩展到大型系统,必须将它们设计成消耗更少的功率和能量。因此,光学NoC必须使用少量波长,避免过多的插入损耗,并减少微环谐振器的数量。我们提出了Quartern拓扑(QuT),这是一种新型的低功耗全光NoC。我们还提出了一种基于波分复用的确定性波长路由算法,该算法可让我们减少光路由器中的波长和微环谐振器。 QuT网络的主要优势是简单和低功耗。我们将QuT与三种不同的全光NoC进行比较:不同合成流量模式下的光学蜘蛛,λ路由器和电晕。 QuT展示了良好的可扩展性,同时功耗和竞争延迟大大降低。与128节点的光学Spidergon,λ路由器和Corona相比,我们的光学拓扑分别降低了23%,86.3%和52.7%的功率。

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