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Performance evaluation of single- and multi-hop wireless networks-on-chip with NAS Parallel Benchmarks

机译:具有NAS并行基准测试的单跳和多跳无线片上网络的性能评估

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Abstract Background Parallel processing in the era of many-core processors demands high-performance networks-on-chip and parallel communication based on intra-chip message passing. In this context, wireless networks-on-chip (WiNoCs) emerge to improve inter-core communication, bringing high bandwidth and low power consumption. In order to increase application performance, WiNoCs can support single-hop or multi-hop communication. The main issue is related to the performance of each communication architecture in the face of different parallel workloads. For this reason, the goal of this work is to evaluate and compare single- and multi-hop WiNoC architectures using parallel applications. Methods The methodology is based on simulations done using the well-known simulator Network Simulator 2 (NS-2) and applications from NAS Parallel Benchmarks (NPB). The WiNoC architectures are based on 2-D mesh topology and ultra wide band (UWB) radio technology. The inter-core transmission is evaluated concerning unicast communication (1:1 and N:1) and broadcast communication (1:N and N:N). This work has, as contribution to the state-of-the-art, the evaluation of both WiNoC designs (single- and multi-hop architectures) with parallel applications. Results Based on our results, the single-hop architecture has lower communication delay than the multi-hop version, and for some workloads, there were no packet losses. However, to achieve high-performance communication, the single-hop architecture consumed 63.12 J for the 256-node network, versus 0.22 J consumed by the multi-hop version. Conclusions Although single-hop WiNoCs reduce network bottlenecks and increase communication parallelism, they are recommended when energy consumption is not a critical factor.
机译:背景技术在多核处理器时代,并行处理需要高性能的片上网络以及基于片内消息传递的并行通信。在这种情况下,出现了片上无线网络(WiNoC)来改善内核间通信,带来高带宽和低功耗。为了提高应用程序性能,WiNoC可以支持单跳或多跳通信。主要问题与面对不同并行工作负载时每种通信体系结构的性能有关。因此,这项工作的目标是使用并行应用程序评估和比较单跳和多跳WiNoC架构。方法该方法基于使用知名模拟器Network Simulator 2(NS-2)和NAS并行基准(NPB)的应用程序进行的模拟。 WiNoC体系结构基于二维网格拓扑和超宽带(UWB)无线电技术。评估核心间传输有关单播通信(1:1和N:1)和广播通信(1:N和N:N)。作为对最新技术的贡献,这项工作对具有并行应用程序的WiNoC设计(单跳和多跳架构)进行了评估。结果根据我们的结果,单跳体系结构的通信延迟比多跳版本低,并且对于某些工作负载,没有数据包丢失。但是,为了实现高性能通信,单跳体系结构在256节点网络中消耗了63.12 J,而多跳版本消耗了0.22J。结论尽管单跳WiNoC减少了网络瓶颈并增加了通信并行性,但在能耗不是关键因素的情况下还是建议使用它们。

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