Power Distribution in NoCs Through a Fuzzy Based Selection Strategy for Adaptive Routing

Nastaran Salehi, A. Khademzadeh, A. Dana
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引用次数: 4

Abstract

Network-on-chip (NoC) is being proposed as a scalable and reusable communication platform for future embedded systems. The performance of NoC largely depends on the underlying deadlock-free and efficient routing algorithm. When the adaptive routing returns a set of acceptable output channels, then a selection strategy is used to select the output channel, therefore the selection strategy affects the efficiency of adaptive routing. In this paper a novel selection strategy for avoiding congested areas using a fuzzy-based routing decision is proposed that can be used with any adaptive routing algorithm. The objective of the proposed selection strategy is to choose a channel that has more free slots input buffer and lower power consumption. The routing path is established by minimizing a cost which is calculated by fuzzy controller and considers the power consumption and free slots input buffer of cores. Performance evaluation is carried out by using a flit-accurate simulator under different traffic scenarios. Result experiments show that the proposed selection strategy applied to Odd-Even routing algorithm can effectively improves average delay and power consumption to meet power balance requirement and avoid hotspot with low hardware overhead.
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基于模糊自适应路由选择策略的noc功率分配
片上网络(NoC)被提出作为未来嵌入式系统的可扩展和可重用的通信平台。NoC的性能在很大程度上取决于底层无死锁和高效的路由算法。当自适应路由返回一组可接受的输出通道时,需要使用选择策略来选择输出通道,因此选择策略影响自适应路由的效率。本文提出了一种基于模糊路由决策的避免拥塞区域的选择策略,该策略可用于任何自适应路由算法。所提出的选择策略的目标是选择具有更多空闲槽输入缓冲区和更低功耗的信道。路由路径由模糊控制器在考虑核的功耗和空闲插槽输入缓冲区的情况下,通过最小化代价来确定。在不同的交通场景下,利用飞行精度模拟器进行了性能评估。实验结果表明,将所提出的选择策略应用于奇偶路由算法中,可以有效地提高平均延迟和功耗,以满足功率均衡要求,并在硬件开销低的情况下避免热点。
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