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Dynamic Programming-Based Lifetime Reliability Optimization in Networks-on-Chip

机译:片上网络中基于动态编程的寿命可靠性优化

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Technology scaling leads to the reliability issue as a primary concern in Networks-on-Chip (NoC) design. Due to routing algorithms, some routers may age much faster than others, which become a bottleneck for system lifetime. In this chapter, lifetime is modeled as a resource consumed over time. A metric lifetime budget is associated with each router, indicating the maximum allowed workload for current period. Since the heterogeneity in router lifetime reliability has strong correlation with the routing algorithm, we define a problem to optimize the lifetime by routing packets along the path with maximum lifetime budgets. A dynamic programming-based lifetime-aware routing algorithm is proposed to optimize the lifetime distribution of routers. The dynamic programming network approach is employed to solve this problem with linear complexity. The experimental results show that the lifetime-aware routing has around 20%, 45%, 55% minimal MTTF improvement than XY routing, NoP routing, and Oddeven routing, respectively.
机译:技术扩展导致可靠性问题成为片上网络(NoC)设计中的主要问题。由于路由算法的原因,某些路由器的老化时间可能比其他路由器快得多,这成为系统寿命的瓶颈。在本章中,生命周期被建模为随时间消耗的资源。每个路由器都关联一个度量标准的生命周期预算,指示当前时间段内允许的最大工作量。由于路由器生命周期可靠性的异质性与路由算法具有很强的相关性,因此我们定义了一个问题,即通过沿路径以最大生命周期预算路由数据包来优化生命周期。提出了一种基于动态规划的生命周期感知路由算法,以优化路由器的生命周期分布。采用动态编程网络方法以线性复杂度解决该问题。实验结果表明,具有生命周期的路由分别比XY路由,NoP路由和奇偶路由具有大约20%,45%,55%的最小MTTF改进。

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