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G-CARA: A Global Congestion-Aware Routing Algorithm for traffic management in 3D networks-on-chip

机译:G-CARA:一种用于3D片上网络中流量管理的全局拥塞感知路由算法

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摘要

Congestion-aware routing algorithms improve the network performance by selecting less congested paths between source and destination routers. In this paper, a Global Congestion-Aware Routing Algorithm (G-CARA) is proposed for traffic management in three-dimensional Networks-on-Chip (3D NoCs). The proposed method forwards data packets efficiently toward regions with lower traffic to avoid network congestion. This is done by two steps. At first, the algorithm collects global congestion information in each layer of the network, and then, the algorithm utilizes the incoming information to specify an optimal path for sending a packet based on dimension-order routing. Global congestion values are propagated by embedded traffic information in header flit of packets. Furthermore, turn models are used to guarantee deadlock-freedom in proposed routing algorithm. Experimental results show that G-CARA can achieve an improvement in both saturation point and average latency within the range of 14%-22% and 42%-61% on average, respectively.
机译:拥塞感知路由算法通过选择源路由器和目标路由器之间较少拥塞的路径来提高网络性能。在本文中,提出了一种全局拥塞感知路由算法(G-CARA),用于3D片上网络(3D NoC)中​​的流量管理。所提出的方法将数据分组有效地转发到具有较低业务量的区域,以避免网络拥塞。这可以通过两个步骤完成。首先,该算法在网络的每一层中收集全局拥塞信息,然后,该算法利用传入的信息来指定基于维度顺序路由发送数据包的最佳路径。全局拥塞值通过包头中的嵌入流量信息传播。此外,在提出的路由算法中,使用转弯模型来确保无死锁。实验结果表明,G-CARA可以分别在饱和点和平均延迟上分别提高14 %%-22%和42 %% 61%之间。

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