A cellular NoC architecture based on butterfly network coding (CBNoC)

Jiaxun Zhang, Yiou Chen, Rui Xiao, X. Ling
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引用次数: 3

Abstract

The intra-chip communication latency and power consumption become the main bottleneck of the development of multi-core processors. Network-on-Chip (NoC) paradigm is proposed to meet these stringent requirements. Since the wireless network interconnection can achieve high speed data transmission with low power consumption, this paper proposes a cellular NoC architecture based on multiple butterfly network coding clusters with low latency. Data packets and control packets are transmitted on the wireless channel and the wired channel, separately. We also design a Z-X-Y path routing algorithm to achieve the shortest routing. Experiment results prove that, compared with Mesh, the proposed architecture can achieve at least 8% average latency reduction with slight resource increment.
基于蝴蝶网络编码(CBNoC)的蜂窝NoC架构
芯片内通信延迟和功耗成为多核处理器发展的主要瓶颈。为了满足这些严格的要求,提出了片上网络(NoC)模式。由于无线网络互联可以在低功耗下实现高速数据传输,本文提出了一种基于多个蝴蝶网络编码簇的低时延蜂窝NoC架构。数据分组和控制分组分别在无线信道和有线信道上传输。设计了Z-X-Y路径路由算法,实现了最短路由。实验结果表明,与Mesh相比,该架构在资源增量较小的情况下平均时延降低8%以上。
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