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首页> 外文期刊>IEICE Transactions on Information and Systems >Support Efficient and Fault-Tolerant Multicast in Bufferless Network-on-Chip
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Support Efficient and Fault-Tolerant Multicast in Bufferless Network-on-Chip

机译:在无缓冲片上网络中支持高效且容错的组播

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摘要

In this paper, we propose three Deflection-Routing-based Multicast (DRM) schemes for a bufferless NoC. The DRM scheme without packets replication (DRM_noPR) sends multicast packet through a non-deterministic path. The DRM schemes with adaptive packets replication (DRM-PR-src and DRM_PR_all) replicate multicast packets at the source or intermediate node according to the destination position and the state of output ports to reduce the average multicast latency. We also provide fault-tolerant supporting in these schemes through a reinforcement-learning-based method to reconfigure the routing table to tolerate permanent faulty links in the network. Simulation results illustrate that the DRM_PR_all scheme achieves 41%, 43% and 37% less latency on average than that of the DRMjioPR scheme and 27%, 29% and 25% less latency on average than that of the DRM_PR.src scheme under three synthetic traffic patterns respectively. In addition, all three fault-tolerant DRM schemes achieve acceptable performance degradation at various link fault rates without any packet lost.
机译:在本文中,我们为无缓冲NoC提出了三种基于偏转路由的组播(DRM)方案。没有数据包复制的DRM方案(DRM_noPR)通过不确定路径发送多播数据包。具有自适应数据包复制功能的DRM方案(DRM-PR-src和DRM_PR_all)根据目的地位置和输出端口的状态在源节点或中间节点复制多播数据包,以减少平均多播延迟。我们还通过基于增强学习的方法在这些方案中提供容错支持,以重新配置路由表以容忍网络中的永久性故障链路。仿真结果表明,在三种情况下,DRM_PR_all方案的延迟平均比DRMjioPR方案低41%,43%和37%,与DRM_PR.src方案相比平均延迟分别低27%,29%和25%流量模式。此外,所有三种容错DRM方案在各种链路故障率下都可以实现可接受的性能下降,而不会丢失任何数据包。

著录项

  • 来源
    《IEICE Transactions on Information and Systems》 |2012年第4期|p.1052-1061|共10页
  • 作者单位

    National Laboratory for Parallel and Distributed Processing, School of Computer, National University of Defense Technology, China;

    Department of Electronic Systems, Royal Institute of Technology, Sweden;

    Department of Electronic Systems, Royal Institute of Technology, Sweden;

    National Laboratory for Parallel and Distributed Processing, School of Computer, National University of Defense Technology, China;

    National Laboratory for Parallel and Distributed Processing, School of Computer, National University of Defense Technology, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bufferless network-on-chip; deflection routing; multicast; fault-tolerance;

    机译:无缓冲片上网络;偏转路径;多播容错;

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