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Slack allocation for yield improvement in NoC-based MPSoCs

机译:松弛分配以提高基于NoC的MPSoC的良率

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Yield losses due to a combination of random, systematic and parametric defects are rising as manufacturing processes scale to smaller features sizes. In embedded systems-on-chip, yield can be increased using slack-under-utilization in execution and storage resources-so that when components are defective, data and tasks can be re-mapped and re-scheduled. For any given system, the design space of possible slack allocations is both large and complex, consisting of every possible way to replace each component in the initial system with another from the component library. However, based on the observation that useful slack is often quantized, we have developed an approach that effectively and efficiently allocates execution and storage slack to jointly optimize system yield and cost. While exploring less than 1.62% of the slack allocation design space, our approach consistently outperforms alternative slack allocation techniques to find sets of designs within 4.27% of the yield-cost Pareto-optimal front.
机译:随着制造工艺扩展到更小的特征尺寸,由于随机,系统和参数缺陷的组合而导致的良率损失正在上升。在嵌入式片上系统中,可以使用执行和存储资源中的利用率不足来提高良率,因此,当组件出现故障时,可以重新映射和重新安排数据和任务。对于任何给定的系统,可能的空闲分配的设计空间既大又复杂,其中包括用组件库中的另一个组件替换初始系统中每个组件的所有可能方法。但是,基于观察到有用的空闲空间经常被量化,我们开发了一种方法,该方法可以有效,高效地分配执行和存储空闲空间,以共同优化系统的产量和成本。在探索少于1.62%的松弛分配设计空间的同时,我们的方法始终优于替代的松弛分配技术,以在收益成本帕累托最优前沿的4.27%之内找到设计集。

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