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Exploiting and evaluating the potentials of the link addition method for NoC transient error mitigation

机译:开发和评估用于NoC瞬态错误缓解的链路添加方法的潜力

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摘要

Transient errors in a Network on Chip (NoC) result in some problems such as network blockage, packets loss or incorrect delivery, which would decrease the network throughput and degrade the successful delivery rate. Many fault tolerant mechanisms, such as error correcting code, retransmission and redundancy for the NoC, have been proposed to mitigate transient errors and guarantee the communication quality. Different from these existing methods, the paper aims at exploiting the potentials of the link addition strategy for transient error alleviation. The regular link addition as well as the customized link addition based on Mesh is designed for alleviating NoC transient errors. The regular design is suitable for the general purpose case while the partially customized design exploits the inherent communication characteristics and the reliability requirement of applications for some specified cases. The experimental results for typical network benchmarks confirm that the proposed link addition methods are effective to improve NoC performance and reliability. (1) In the case of the regular link addition, 4×4 Torus brings the throughput to increase by 45.76% and 87.34% over Mesh for the transpose traffic and the uniform traffic respectively. The reliability metrics of Torus over Mesh are up to 56.65% and 12.71% for the transpose traffic and the uniform traffic respectively. (2) The novel customized reliability-aware link addition mechanism makes the throughput improvement up to 17.4%, 53.5% and the reliability metric up to 16.34%, 57.76% over standard Mesh for the transpose traffic and the hotspot traffic respectively. In addition, the area overhead and power consumption of NoCs are also evaluated by the tool-Orion in the paper.
机译:片上网络(NoC)中​​的瞬态错误会导致一些问题,例如网络阻塞,数据包丢失或传递不正确,这会降低网络吞吐量并降低成功传递率。为了减轻瞬态错误并保证通信质量,已经提出了许多容错机制,例如纠错码,NoC的重传和冗余。与这些现有方法不同,本文旨在利用链路添加策略的潜力来缓解瞬时错误。常规链接添加以及基于Mesh的自定义链接添加旨在缓解NoC瞬态错误。常规设计适合于通用情况,而部分定制的设计则利用了固有通信特性和某些特定情况下应用程序的可靠性要求。典型网络基准测试结果表明,所提出的链路添加方法可以有效提高NoC性能和可靠性。 (1)在常规链路添加的情况下,对于转置流量和统一流量,4×4 Torus的吞吐量分别比Mesh增长45.76%和87.34%。对于转置流量和统一流量,Torus over Mesh的可靠性指标分别高达56.65%和12.71%。 (2)新型定制的可靠性感知链路添加机制使转置流量和热点流量分别比标准Mesh的吞吐量提高了17.4%,53.5%和可靠性指标分别达到16.34%,57.76%。此外,白皮书中的Orion工具还评估了NoC的区域开销和功耗。

著录项

  • 来源
    《Microprocessors and microsystems》 |2014年第3期|183-196|共14页
  • 作者

    Jiajia Jiao; Yuzhuo Fu;

  • 作者单位

    School of Micro Electronics, Shanghai Jiao Tong University, 200240 Shanghai. China;

    School of Micro Electronics, Shanghai Jiao Tong University, 200240 Shanghai. 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

    NoC; Reliability; Transient errors; Link addition;

    机译:NoC;可靠性;暂时错误;链接添加;

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