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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Formal Worst-Case Analysis of Crosstalk Noise in Mesh-Based Optical Networks-on-Chip
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Formal Worst-Case Analysis of Crosstalk Noise in Mesh-Based Optical Networks-on-Chip

机译:基于网格的片上光网络中串扰噪声的形式最坏案例分析

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Crosstalk noise is an intrinsic characteristic as well as a potential issue of photonic devices. In large scale optical networks-on-chips (ONoCs), crosstalk noise could cause severe performance degradation and prevent ONoC from communicating properly. The novel contribution of this paper is the systematical modeling and analysis of the crosstalk noise and the signal-to-noise ratio (SNR) of optical routers and mesh-based ONoCs using a formal method. Formal analytical models for the worst-case crosstalk noise and minimum SNR in mesh-based ONoCs are presented. The crosstalk analysis is performed at device, router, and network levels. A general 5$,times,$5 optical router model is proposed for router level analysis. The minimum SNR optical link candidates, which constrain the scalability of mesh-based ONoCs, are identified. It is also shown that symmetric mesh-based ONoCs have the best SNR performance. The presented formal analyses can be easily applied to other optical routers and mesh-based ONoCs. Finally, we present case studies of mesh-based ONoCs using the optimized crossbar and Crux optical routers to evaluate the proposed formal method. We find that crosstalk noise can significantly limit the scalability of mesh-based ONoCs. For example, when the mesh-based ONoC size, using optimized crossbar, is larger than 8$,times,$8, the optical signal power is smaller than the crosstalk noise power; when the network size is 16$,times,$ 16 and the input power is 0 dBm, in the worst-case, the signal power is ${-}{rm 24.9}~{rm dBm}$ and the crosstalk noise power is ${-}{rm 11}~{rm dBm}$.
机译:串扰噪声是光子器件的固有特性以及潜在问题。在大型片上光网络(ONoC)中​​,串扰噪声可能会导致严重的性能下降,并妨碍ONoC正常通信。本文的新颖贡献是使用形式化方法对光路由器和基于网状的ONoC的串扰噪声和信噪比(SNR)进行了系统建模和分析。提出了基于网格的ONoC中最坏情况的串扰噪声和最小SNR的形式化分析模型。串扰分析是在设备,路由器和网络级别执行的。提出了一种通用的5 $,times,$ 5光路由器模型,用于路由器级分析。确定了限制基于网格的ONoC的可伸缩性的最小SNR光学链路候选者。还表明,基于对称网格的ONoC具有最佳的SNR性能。提出的形式分析可以轻松地应用于其他光路由器和基于网状的ONoC。最后,我们使用优化的交叉开关和Crux光路由器对基于网格的ONoC进行案例研究,以评估所提出的形式化方法。我们发现串扰噪声会大大限制基于网格的ONoC的可扩展性。例如,使用优化的交叉开关,基于网格的ONoC大小大于8 $,times,$ 8,光信号功率小于串扰噪声功率;在最坏的情况下,当网络大小为16 $,times,$ 16且输入功率为0 dBm时,信号功率为 $ {-} {rm 24.9}〜{rm dBm} $ ,而串扰噪声功率为 $ {-} {rm 11}〜{rm dBm} $

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