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首页> 外文期刊>Journal of Parallel and Distributed Computing >Design and performance evaluation of Mesh-of-Tree-based hierarchical wireless network-on-chip for multicore systems
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Design and performance evaluation of Mesh-of-Tree-based hierarchical wireless network-on-chip for multicore systems

机译:基于树状网格的多核分层无线片上网络的设计和性能评估

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摘要

Hybrid Wireless Network on Chip (WNoC) architecture has been proposed as a promising solution for addressing on-chip communication problems in many multicore systems. The choice of infrastructure topology directly affects the performance gain of the architecture. For exploiting the benefits offered by both mesh and tree topologies, we employ Mesh-of-Tree (MoT) topology as a new communication infrastructure for hybrid WNoC architectures. Moreover, long-distance links are effectively added to the MoT topology to form wireless MoT architecture and an appropriate communication routing scheme is presented to employ this paradigm. The performance and the system cost of the proposed WNoC architecture have been evaluated and compared with other notable WNoC architectures through comprehensive network-level simulations. Experimental results demonstrate the effectiveness of this wireless MoT architecture under both synthetic and realistic traffic patterns in terms of network throughput, latency, and power consumption. The results demonstrate that the proposed architecture can approximately achieve 35% improvement in saturation throughput, 58% reduction in transmission latency, and 43% improvement in power consumption over a wireline MoT-NoC, on average. (C) 2018 Elsevier Inc. All rights reserved.
机译:提出了混合无线片上无线网络(WNoC)体系结构,作为解决许多多核系统中片上通信问题的有前途的解决方案。基础架构拓扑的选择直接影响架构的性能提升。为了利用网格和树形拓扑所提供的好处,我们采用树形树(MoT)拓扑作为混合WNoC架构的新通信基础结构。此外,将长距离链路有效地添加到MoT拓扑以形成无线MoT架构,并提出了一种适当的通信路由方案以采用此范例。已通过全面的网络级仿真评估了拟议WNoC架构的性能和系统成本,并将其与其他著名的WNoC架构进行了比较。实验结果证明,在网络流量,延迟和功耗方面,这种无线MoT架构在合成和实际流量模式下均有效。结果表明,与有线MoT-NoC相比,平均而言,所提出的体系结构可实现大约35%的饱和吞吐量提高,58%的传输延迟降低以及43%的功耗降低。 (C)2018 Elsevier Inc.保留所有权利。

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