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首页> 外文期刊>Journal of computer networks and communications >Novel NoC Topology Construction for High-Performance Communications
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Novel NoC Topology Construction for High-Performance Communications

机译:高性能通信的新型NoC拓扑构造

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Different intellectual property (IP) cores, including processor and memory, are interconnected to build a typical system-on-chip (SoC) architecture. Larger SoC designs dictate the data communication to happen over the global interconnects. Network-on-Chip(NoC) architectures have been proposed as a scalable solution to the global communication challenges in nanoscale systems-on-chip (SoC) design. We proposed an idea on building customizing synthesis network—on-chip with the better flow partitioning and also considered power and area reduction as compared to the already presented regular topologies. Hence to improve the performance of SoC, first, we did a performance study of regular interconnect topologies MESH, TORUS, BFT and EBFT, we observed that the overall latency and throughput of the EBFT is better compared to other topologies, The next best in case of latency and throughput is BFT. Experimental results on a variety of NoC benchmarks showed that our synthesis results were achieved reduction in power consumption and average hop count over custom topology implementation.
机译:包括处理器和内存在内的不同知识产权(IP)内核相互连接,以构建典型的片上系统(SoC)架构。较大的SoC设计要求数据通信发生在全局互连上。片上网络(NoC)体系结构已被提出来作为可扩展的解决方案,以应对纳米级片上系统(SoC)设计中的全球通信挑战。我们提出了一种构建定制的综合网络的想法,该网络具有更好的流分配功能,并且与已经提出的常规拓扑相比,还考虑了功耗和面积的减少。因此,为了提高SoC的性能,首先,我们对常规互连拓扑MESH,TORUS,BFT和EBFT进行了性能研究,我们观察到EBFT的总体延迟和吞吐量比其他拓扑要好,其次是最好的延迟和吞吐量是BFT。在各种NoC基准上的实验结果表明,与自定义拓扑实现相比,我们的综合结果实现了功耗和平均跳数的减少。

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