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WRH-ONoC: A wavelength-reused hierarchical architecture for optical Network on Chips

机译:WRH-ONoC:用于芯片上光网络的波长复用的层次结构

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Optical Network on Chip (ONoC) is a promising technology for the next-generation many-core chip multiprocessors owing to its tremendous advantages in low power consumption, low communication delay, and high bandwidth. In this paper we present WRH-ONoC, a novel wavelength-reused hierarchical architecture that is capable of interconnecting thousands of cores using a limited number of wavelengths while providing extremely high-throughput data communication between connected cores. In WRH-ONoC, the cores are divided into small subsystems that are interconnected using multiple λ-routers and gateways in a hierarchical manner. Each λ-router can provide non-blocking parallel communication among the directly connected cores or gateways, and all λ-routers can reuse the limited number of available wavelengths. Communications between cores in different subsystems are routed via gateways in which optical signals can change their wavelengths via optical-electrical signal conversions. For a given number of cores, we give the minimum number of levels, λ-routers, and gateways required to interconnect these cores, and derive the expected end-to-end data communication delay under the Uniform-Poisson traffic pattern. Both theoretical analysis and simulation results demonstrate that WRH-ONoC can achieve significant improvement on performance and reduction on hardware cost in comparison with the existing solutions.
机译:片上光网络(ONoC)由于其在低功耗,低通信延迟和高带宽方面的巨大优势,是下一代多核芯片多处理器的一项有前途的技术。在本文中,我们介绍了WRH-ONoC,这是一种新颖的可重用波长的分层体系结构,它能够使用有限数量的波长互连数千个核,同时在连接的核之间提供极高的吞吐量数据通信。在WRH-ONoC中,核心被分为多个小的子系统,这些子系统使用多个λ路由器和网关以分层的方式互连。每个λ路由器都可以在直接连接的核心或网关之间提供无阻塞的并行通信,并且所有λ路由器都可以重用有限数量的可用波长。不同子系统的核心之间的通信通过网关进行路由,在网关中,光信号可以通过光电信号转换来改变其波长。对于给定数量的内核,我们给出了互连这些内核所需的最少数量的层,λ路由器和网关,并得出了统一泊松流量模式下预期的端到端数据通信延迟。理论分析和仿真结果均表明,与现有解决方案相比,WRH-ONoC可以显着提高性能并降低硬件成本。

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