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Packet Logging Mechanism for Adaptive Online Fault Detection on Network-on-Chip

机译:用于网络上的自适应在线故障检测的数据包记录机制

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The shrinking size of transistors and smaller interconnect elements contribute to higher probability of on-chip faults. In order to sustain the functionality of a system in the presence of faults, fault tolerance becomes one of the key feature in Network-on-Chip (NoC) design methodology. Existing end-to-end (E2E) error detection and correction (EDC) performs well at low error rate whereas switch-to-switch (S2S) EDC performs better at high error rate. Nonetheless, choosing between both techniques is required with changing fault occurrence probability. This paper proposes an adaptive online fault detection based on packet logging mechanism. In this proposed mechanism, each router logs transmitted packets and NACK packets as well as monitors its fault level continuously. Then, the router will determine either to use E2E or S2S EDC based on error probability. Based on experimental results, our proposed adaptive method switches between E2E or S2S relative to error probability performs better than only E2E or S2S.
机译:晶体管和较小互连元件的收缩尺寸有助于片上断层的概率。为了在存在故障存在下维持系统的功能,容错成为网络上的网络(NOC)设计方法中的关键特征之一。现有的端到端(E2E)错误检测和校正(EDC)在低错误率下执行良好,而切换到开关(S2S)EDC以高误差率执行更好。尽管如此,需要在发生故障发生概率时选择两种技术之间的选择。本文提出了一种基于分组日志记录机制的自适应在线故障检测。在这一提出的机制中,每个路由器记录传输的数据包和NACK数据包,并连续监视其故障级别。然后,路由器将根据误差概率确定使用E2E或S2S EDC。基于实验结果,我们所提出的自适应方法在E2E或S2之间切换相对于误差概率比仅仅E2E或S2s更好地执行。

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