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A Cluster-Based Reconfigurable Optical Network on Chip Design

机译:基于集群的可重构光网络芯片设计

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With the advances in semiconductor and circuit integrated technologies, the number of IP cores that can be integrated on one chip is becoming larger and larger. The traditional bus interconnection method of System on Chip (SoC) cannot meet the performance requirements of the Multi Processor System on Chip (MPSoC). Network on Chip (NoC) has improved the interconnect performance of IP cores. However, the conventional metallic interconnection constrains NoC to make greater improvement, while the mature of optical device integrated technology makes the trend of applying optical interconnection technology to chip promising. This paper proposes a cluster-based reconfigurable optical network on chip architecture (CRONoC), which uses a high bandwidth optical circuit switching network to transmit the inter-cluster data and an electrical packet switching network to control the optical network and transmit the intra-cluster data. By activating the resonators in the proposed inter-cluster crossbar structure, the topology is reconfigurable. Employing the proposed routing algorithm, the maximum distance of the network is reduced to 3 for the 64 core CRONoC. Finally, the performance of CRONoC in terms of end to end latency and network throughput under different traffic patterns is evaluated with OPNET. The simulation results show that the CRONoC architecture is suitable for the local and collective communications.
机译:随着半导体和电路集成技术的进步,可以集成在一个芯片上的IP核的数量越来越大。片上系统(SoC)的传统总线互连方法无法满足多处理器片上系统(MPSoC)的性能要求。片上网络(NoC)改善了IP内核的互连性能。然而,传统的金属互连限制了NoC的改进,而光学器件集成技术的成熟使将光学互连技术应用于芯片的趋势大有可为。本文提出了一种基于集群的可重配置的片上光网络架构(CRONoC),该架构使用高带宽光电路交换网络来传输群集间数据,并使用电包交换网络来控制光网络并传输群集内数据。通过激活所提出的集群间交叉开关结构中的谐振器,拓扑可以重新配置。采用建议的路由算法,对于64核CRONoC,网络的最大距离减少到3。最后,使用OPNET评估了不同流量模式下CRONoC在端到端延迟和网络吞吐量方面的性能。仿真结果表明,CRONoC体系结构适用于本地和集体通信。

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