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Energy-performance optimized design of silicon photonic interconnection networks for high-performance computing

机译:用于高性能计算的硅光子互连网络的能源性能优化设计

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We present detailed electrical and optical models of the elements that comprise a WDM silicon photonic link. The electronics is assumed to be based on 65 nm CMOS node and the optical modulators and demultiplexers are based on microring resonators. The goal of this study is to analyze the energy consumption and scalability of the link by finding the right combination of (number of channels × data rate per channel) that fully covers the available optical power budget. Based on the set of empirical and analytical models presented in this work, a maximum capacity of 0.75 Tbps can be envisioned for a point-to-point link with an energy consumption of 1.9 pJ/bit. Sub-pJ/bit energy consumption is also predicted for aggregated bitrates up to 0.35 Tbps.
机译:我们介绍了组成WDM硅光子链路的元件的详细电学和光学模型。假定电子器件基于65 nm CMOS节点,而光调制器和解复用器则基于微环谐振器。这项研究的目的是通过找到完全覆盖可用光功率预算的正确组合(通道数×每个通道的数据速率)来分析链路的能耗和可伸缩性。基于这项工作中提供的一组经验和分析模型,可以为能量为1.9 pJ / bit的点对点链接设想最大容量为0.75 Tbps。对于高达0.35 Tbps的合计比特率,还预测了低于pJ /比特的能耗。

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