首页> 外文会议>2013 IEEE 31st International Conference on Computer Design >Energy-efficient Runtime Adaptive Scrubbing in fault-tolerant Network-on-Chips (NoCs) architectures
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Energy-efficient Runtime Adaptive Scrubbing in fault-tolerant Network-on-Chips (NoCs) architectures

机译:容错芯片上网络(NoC)架构中的节能高效运行时自适应清理

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As Networks-on-Chips (NoCs) continue to become more susceptible to process variation, cross-talk, hard and soft errors with technology scaling to sub-nanometer, there is an urgent need for adaptive Error Correction Coding (ECC) schemes for improving the resiliency of the system. The goal of adaptive ECC schemes should be two fold; decrease power consumption when errors are infrequent, thereby maximizing power savings and increase the fault coverage when errors are frequent, thereby improving application speedup while consuming more power. In this paper, we propose Runtime Adaptive Scrubbing (RAS), a novel multi-layered error correction and detection scheme for Networks-on-Chips (NoCs) architectures that intelligently adjusts fault coverage at the physical layer using variable strength encoders to scrub (protect) flits, thereby preventing faults from accumulating and propagating up to the logical layer. RAS successfully permits graceful network degradation while improving the overall network speedup, fault granularity, and wider fault coverage than traditional static schemes. Simulation results indicate that RAS improves network latency by an average of 10% for Splash-2/PARSEC benchmarks on a 8 × 8 mesh network while incurring 6.6% power penalty per flit and saving 15% in area overhead.
机译:随着芯片级网络(NoC)继续变得更容易受到工艺变化,串扰,硬错误和软错误的影响,并且技术可扩展至亚纳米级,因此迫切需要自适应纠错编码(ECC)方案来进行改进系统的弹性。自适应ECC方案的目标应该是两个方面。减少错误很少发生时的功耗,从而最大程度地节省功率,并在错误频繁发生时增加故障覆盖率,从而在消耗更多功率的同时提高应用程序速度。在本文中,我们提出了运行时自适应擦洗(RAS),这是一种适用于芯片网络(NoCs)架构的新颖的多层纠错和检测方案,可以使用可变强度编码器进行擦洗(保护,以智能方式调整物理层的故障覆盖率) ),从而防止故障累积和传播到逻辑层。与传统的静态方案相比,RAS成功地实现了正常的网络降级,同时提高了整体网络速度,故障粒度和更广泛的故障覆盖范围。仿真结果表明,对于8×8网格网络上的Splash-2 / PARSEC基准,RAS平均可将网络延迟提高10%,同时每条网片产生6.6%的功耗损失,并节省15%的区域开销。

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