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Challenges and progress toward a silicon-based multi-microring optical network-on-chip

机译:硅基多微环片上光网络的挑战与进展

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This paper presents an integrable optical network-on-chip based on multiple microrings, named multimicroring (MMR). The network consists of a central resonating microring with local microrings connected to the input/output ports. Multiple parallel communications can be supported through wavelength division multiplexing by properly tuning local microrings. The paper reports progress towards the realization and control of the MMR network-on-chip using a silicon-based CMOS compatible platform. Strained silicon is selected and demonstrated to be a valid material for realizing integrated devices suitable for packet switching. Then a mathematical model based on the transfer matrix method is used to assess the MMR physical performance, showing that the network is robust to crosstalk. Finally a novel scheduling framework is proposed for arbitrating the packet transmissions. Simulation results of the network performance indicate that adding tunability to the transmitters allows full exploitation of WDM multiplexing, leading to a significant reduction of the packet latency.
机译:本文提出了一种基于多微环的可集成芯片上光网络,称为多微环(MMR)。该网络由中央谐振微环和连接到输入/输出端口的本地微环组成。通过适当地调整局部微环,可以通过波分复用来支持多个并行通信。该论文报告了使用基于硅的CMOS兼容平台实现和控制MMR片上网络的进展。选择应变硅并证明其是用于实现适用于分组交换的集成设备的有效材料。然后,基于传输矩阵方法的数学模型用于评估MMR的物理性能,表明该网络对串扰具有鲁棒性。最后,提出了一种新颖的调度框架,用于仲裁分组传输。网络性能的仿真结果表明,为发射机增加可调谐性可以充分利用WDM多路复用,从而显着减少了数据包延迟。

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