使用结构直径二维网格结构的片上网络路由

P. Ghosal, T. S. Das
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引用次数: 7

摘要

片上网络的性能很大程度上取决于它的底层架构和相关的路由技术。结构化可扩展互连架构可以显著提高NoC在可扩展性、模块化、传输延迟和通信并行性方面的性能。构建良好的网络架构还将平衡网络负载,并尽量减少在网络上引起热点的机会。在这项工作中,我们的主要目标是设计一个高效的NoC架构,通过在网络上分配负载来提高其在所有这些方面的性能,并试图减少网络的直径,以降低路由成本。本文提出了一种基于结构直径XY确定性路由算法的结构直径2D (Structural diameter 2D, SD2D)网格结构,以平衡网络负载,提高并行度,保证数据包总是通过可能的最短路径到达目的地,且路径无死锁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Network-on-chip routing using Structural Diametrical 2D mesh architecture
Performance of a NoC (network-on-chip) strongly depends on its underlying architecture and related routing techniques. A structural scalable interconnection architecture may significantly increase the performance of a NoC in terms of scalability, modularity, transport latency and parallelism in communication. Well-constructed network architecture will also balance load of the network and try to reduce the chance of causing a hot spot on the network. In this work, our primary objective was to design an efficient NoC architecture to increase its performance in all these aspects with distribution of the load across the network and trying to reduce the diameter of the network in order to reduce the cost of routing. In this paper, we present a new architecture, called Structural Diametrical 2D (SD2D) mesh based on Structural Diametrical XY deterministic routing algorithm that tries to balance the load of the network, increase the level of parallelism, ensures that the packet will always reach the destination through the possible shortest path, and the path is deadlock free.
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