Efficient Optical Power Delivery System for Hybrid Electronic-Photonic Manycore Processors

Shixi Chen, Jiang Xu, Xuanqi Chen, Zhifei Wang, Jun Feng, Jiaxu Zhang, Zhongyuan Tian, Xiao Li
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Abstract

A lot of efforts have been devoted to optically enabled high-performance communication infrastructures for future manycore processors. Silicon photonic network promises high bandwidth, high energy efficiency and low latency. However, the ever-increasing network complexity results in high optical power demands, which stress the optical power delivery and affect delivery efficiency. Facing these challenges, we propose Ring-based Optical Active Delivery (ROAD) system, to effectively manage and efficiently deliver high optical power throughout photonic-electronic hybrid systems. Experimental results demonstrate up to 5.49X energy efficiency improvement compared to traditional design without affecting processor performance.
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电子-光子混合多核处理器的高效光功率传输系统
为未来多核处理器的光学高性能通信基础设施已经投入了大量的努力。硅光子网络具有高带宽、高能效和低延迟的特点。但是,随着网络复杂度的不断提高,对光功率的需求也越来越大,这给光功率的传输带来了压力,影响了传输效率。面对这些挑战,我们提出了基于环形的光主动传输(ROAD)系统,以有效地管理和高效地在光电子混合系统中提供高光功率。实验结果表明,与传统设计相比,在不影响处理器性能的情况下,能效提高了5.49倍。
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