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VP-Router: On balancing the traffic load in on-chip networks

机译:VP-Router:在平衡片上网络中的流量负载

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Along with the scaling up for network-on-chips (NoC), the network traffic grows increasingly, and generally the central region is easily to become the traffic hotspots. The problem of unbalanced traffic can lead to a part of network links becoming the bottleneck of network communication, and thus hurt the network and system performance. In this paper, we propose load-balanced link distribution method, which is intended to allocating physical channels according to the traffic load on each link. To support connecting multiple physical channels between two routers, we propose a novel concept of virtual port, and design a low-cost multi-port router called virtual port router (VP-Router). Compared to the network with traditional routers, the network with VP-Routers can effectively balance the network traffic load on links. The experiments with SPLASH2 benchmarks exhibit that VP-Router performs 6.3% and 9.0% better in energy-delay-product (EDP) for 4 × 4 and 8 × 8 mesh networks respectively. As for system throughput, VP-Router improves by about 3.5% and 5.8% on average respectively.
机译:随着网络上网(NOC)的缩放,网络流量越来越多地增长,并且通常中央区域很容易成为交通热点。流量不平衡的问题可能导致网络链路的一部分成为网络通信的瓶颈,从而损害了网络和系统性能。在本文中,我们提出了负载平衡的链路分布方法,该方法旨在根据每个链路上的业务负载分配物理信道。为了支持在两个路由器之间连接多个物理通道,我们提出了一种虚拟端口的新颖概念,并设计一个名为Virtual Port Router(VP-Router)的低成本多端口路由器。与传统路由器的网络相比,具有VP-Routers的网络可以有效地平衡链路上的网络流量负载。 Splash2基准测试的实验表明,VP-Router分别在4×4和8×8目网络的能量 - 延迟 - 产品(EDP)中更好地执行6.3%和9.0%。至于系统吞吐量,平均VP路由器分别提高了约3.5%和5.8%。

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