基于分组电路交换的NoC路由算法比较

Gaoming Du, Jing He, Y. Song, Duoli Zhang, Huajie Wu
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引用次数: 7

摘要

片上网络采用的分组电路交换是一种新的数据传输协议,它通过发送请求包来建立路由,通过电路交换来传输数据。为了使基于协议的网络表现出优异的性能,我们尽可能快速、成功地构建数据传输链路,这取决于路由算法的质量。本文将XY路由算法、Turn路由算法和Retrograde-Turn路由算法应用于片上网络。根据不同的数据包长度和注入速率,我们构建了不同的网络拥塞情况来测试网络性能。实验结果表明,与XY路由算法相比,在数据包长度较长、注入速率较高的情况下,逆行转路由算法的平均吞吐量和平均延迟最多可分别提高32.99%和12.16%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of NoC routing algorithms based on packet-circuit switching
Packet-circuit switching adopted by network on chip is a new data transmission protocol, which establishes a route by sending a request packet and transfers data by circuit switching. In order to make the network based on the protocol show excellent performance, we build data transmission link as rapidly and successfully as possible, which depends on the quality of routing algorithm. In this paper, XY routing algorithm, Turn routing algorithm and Retrograde-Turn routing algorithm are applied on Network-on-Chip. According to different packet lengths and injection rates, we construct different network congestion situations to test network performance. Compared with the XY routing algorithm, the experiment results demonstrate that the Retrograde-Turn routing algorithm can improve average throughput and average latency by 32.99% and 12.16% at best, respectively, when the packet length is long and the injection rate is high.
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