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波长路由片上光网络拓扑的备份资源定制与分配方法.pdf

上传人: 芦苇 编号:651863 2025-05-01 26页 1.49MB

1、Zhidan Zheng,You-Jen Chang,Liaoyuan Cheng,Tsun-Ming Tseng,Ulf SchlichtmannChair of Electronic Design AutomationTechnical University of MunichA Backup Resource Customization and Allocation Method for Wavelength-Routed Optical Networks-on-Chip TopologiesOutline Motivation Related Works Our Method Expe

2、rimental Results Conclusion2Outline Motivation Introduction to wavelength-routed optical networks-on-chip(WRONoCs)Reliability concerns in WRONoCs Related Works Our Method Experimental Results Conclusion3Motivation4Evolution from single-to many-core computing systemFigure source:T.Alexoudi et al.,“Op

3、tics in Computing:from Photonic Network-on-Chip to Chip-to-Chip Interconnects and Disintegrated Architectures,”In IEEE JLT 2018.Challenges of on-chip communi-cation High communication throughput Low communication latency High power efficiency Demand for developing advanced interconnect technologiesI

4、ntroduction to WRONoCs5WRONoC emerges as a promising option for advanced interconnect technologies for critical advantages:1 S.Van Winkle et al.,Extending the Power-Efficiency and Performance of Photonic Interconnects for Heterogeneous Multicores with Machine Learning,2018 IEEE HPCA.2 M.Ortn-Obn et

5、al.,Contrasting Laser Power Requirements of Wavelength-Routed Optical NoC Topologies Subject to the Floorplanning,Placement,and Routing Constraints of a 3-D-Stacked System,in 2017 IEEE TVLSI.High bandwidth communication Multiple optical signals can simultaneously travel along a single waveguide with

6、out affecting each other.Ultra-low propagation latency The propagation speed of optical signals in a waveguide is fast,such as./1.Power-efficient devices The switches,i.e,microring resonator(MRRs),have low power consumption,around./2.No extra arbitration overheadm1s2s1switchKey Components of WRONoCs

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本文探讨了光子网络芯片(WRONoCs)的备份资源定制和分配方法,以提高可靠性和效率。作者提出了一种基于故障模型的方法,该模型考虑了MRR光谱偏移的概率分布,并据此构建备份路径。实验结果显示,与现有故障容忍设计相比,本文方法在所有案例中均能显著提高通信的可靠性,并增加通信路径的备份数量。在8x8网络中,通过增加备份路径的数量,可以显著提高通信的可靠性。此外,本文方法还具有较高的能量效率和可扩展性。
"光子芯片网络中的备份资源优化分配方法" "超高速度光子网络芯片的可靠性与故障模型" "如何在光子网络芯片中实现高效可靠的通信?"
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