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Resilient microring resonator based photonic networks

机译:基于弹性微环谐振器的光子网络

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Microring resonator-based photonic interconnects are being considered for both on-chip and off-chip communication in order to satisfy the power and bandwidth requirements of future large scale chip multiprocessors. However, microring resonators are prone to malfunction due to fabrication errors, and they are also extremely sensitive to fluctuations in temperature. In this paper we derive a fault model for microring based optical links that can be used by computer architects to make informed design choices. We evaluate different schemes for improving resilience, such as retransmission versus error-correction, using an optical fault simulator based on our fault model. We show how meeting a target mean time between failures (MTBF) affects the choice of resilience scheme - our investigation indicates that until fault rates are in the range of 10-21 to 10-24 per cycle, error detection/correction schemes will be needed in order to meet a 1M hour MTBF. We also evaluate how the resilience scheme impacts the performance of the link, which will help an architect choose the appropriate scheme based on the throughput requirements of a particular design.
机译:为了满足未来大规模芯片多处理器的功率和带宽要求,正在考虑将基于微环谐振器的光子互连用于片上和片外通信。但是,由于制造误差,微环谐振器容易发生故障,并且对温度的波动也极为敏感。在本文中,我们导出了基于微环的光链路的故障模型,计算机架构师可以使用该模型来做出明智的设计选择。我们使用基于我们的故障模型的光学故障模拟器,评估了提高弹性的不同方案,例如重传与纠错。我们展示了达到目标平均间隔时间(MTBF)如何影响弹性方案的选择-我们的调查表明,直到故障率在每个周期10-21到10-24之间,才需要错误检测/纠正方案。为了达到一百万小时的平均故障间隔时间。我们还评估了弹性方案如何影响链路的性能,这将有助于架构师根据特定设计的吞吐量要求选择合适的方案。

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