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Energy-aware routing in hybrid optical network-on-chip for future Multi-Processor System-on-Chip

机译:未来片上多处理器片上系统中混合光片上网络中的能量感知路由

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With the development of Multi-Processor System-on-Chip (MP-SoC) in recent years, the intra-chip communication is becoming the bottleneck of the whole system. Current electronic network-on-chip (NoC) designs face serious challenges, such as bandwidth, latency and power consumption. Optical interconnection networks are a promising technology to overcome these problems. In this paper, we study the routing problem in optical NoCs with arbitrary network topologies. Traditionally, a minimum hop count routing policy is employed for electronic NoCs, as it minimizes both power consumption and latency. However, due to the special architecture of current optical NoC routers , such a minimum-hop path may not be energy-wise optimal. Using a detailed model of optical routers we reduce the energy-aware routing problem into a shortest-path problem, which can then be solved using one of the many well known techniques. By applying our approach to different popular topologies, we show that the energy consumed in data communication in an optical NoC can be significantly reduced. We also propose the use of optical burst switching (OBS) in optical NoCs to reduce control overhead, as well as an adaptive routing mechanism to reduce energy consumption without introducing extra latency. Our simulation results demonstrate the effectiveness of the proposed algorithms.
机译:近年来,随着多处理器片上系统(MP-SoC)的发展,芯片内通信已成为整个系统的瓶颈。当前的电子片上网络(NoC)设计面临着严峻的挑战,例如带宽,延迟和功耗。光互连网络是克服这些问题的有前途的技术。在本文中,我们研究具有任意网络拓扑的光学NoC中的路由问题。传统上,最小跳数路由策略用于电子NoC,因为它可以最大程度地降低功耗和延迟。但是,由于当前的光学NoC路由器的特殊体系结构,这种最小跃点路径可能不是能源方面的最佳选择。使用光路由器的详细模型,我们将能量感知路由问题简化为最短路径问题,然后可以使用许多众所周知的技术之一来解决。通过将我们的方法应用于不同的流行拓扑,我们表明可以大大降低光学NoC中数据通信中消耗的能量。我们还建议在光学NoC中使用光学突发交换(OBS)来减少控制开销,以及在不引入额外延迟的情况下使用自适应路由机制来减少能耗。我们的仿真结果证明了所提出算法的有效性。

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