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An Inter/Intra-Chip Optical Network for Manycore Processors

机译:用于Manycore处理器的片内/片内光网络

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Manycore processor system is becoming an attractive platform for applications seeking both high performance and high energy efficiency. However, huge communication demands among cores, large power density, and low process yield will be three significant limitations for the scalability of future manycore processors. Breaking a large chip into multiple smaller ones can alleviate the problems of power density and yield, but would worsen the problem of communication efficiency due to the limited off-chip bandwidth. In response, we propose an inter/intra-chip optical network, which will not only fulfill the intra-chip communication requirements but also address the inter-chip communication, by exploiting the advantages of optical links with high bandwidth and energy efficiency. The network is composed of an inter-chip subnetwork and multiple intra-chip subnetworks, and the subnetworks closely coordinate with each other to balance the traffic. The proposed network effectively explores the distinctive properties of optical signals and photonic devices, and dynamically partitions each data channel into multiple sections. Each section can be utilized independently to boost performance as well as reduce energy consumption. Simulation results show that our network can achieve higher throughput with lower power consumption than alternative designs under most of synthetic traffics and real applications.
机译:对于寻求高性能和高能效的应用,Manycore处理器系统正成为有吸引力的平台。但是,内核之间巨大的通信需求,大功率密度和低工艺良率将是未来众多内核处理器可扩展性的三个重要限制。将大芯片分成多个较小的芯片可以缓解功率密度和成品率的问题,但是由于有限的片外带宽,会使通信效率的问题恶化。作为回应,我们提出了一种芯片间/芯片内光网络,该网络将充分利用具有高带宽和高能效的光链路的优势,不仅满足芯片内通信需求,而且解决芯片间通信。该网络由一个芯片间子网和多个芯片内子网组成,这些子网彼此紧密协作以平衡流量。拟议的网络有效地探索了光信号和光子设备的独特属性,并将每个数据通道动态划分为多个部分。每个部分均可独立使用,以提高性能并减少能耗。仿真结果表明,在大多数合成流量和实际应用中,与替代设计相比,我们的网络可以以更低的功耗实现更高的吞吐量。

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