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Fault tolerant and congestion aware routing algorithm for network on chip1

机译:片上网络的容错和拥塞感知路由算法

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Continuous technology scaling in semiconductor industry makes the system reliability as a serious concern in the area of nanoscale computing. In this paper, a fully adaptive routing algorithm is proposed to overcome faults in NoCs (Network-on-Chip). This algorithm called DINRA-NoC (DIstiributed and New Routing Algorithm for NoC) is distributed, fault tolerant and congestion-aware. First, each node selects the appropriate output to route packets to neighbor routers according to the state of each link and router. Secondly, the proposed routing algorithm takes in account the status of adjacent routers traffic to update the congestion metric. DINRA-NoC does not use any VCs (Virtual Channels) and is deadlock-free. A simulation of the proposed routing algorithm has been carried out using Noxim simulator. The results show that DINRA ensures a good reliability rate despite of the presence of many faulty routers/links. In other hand, the simulation results indicate that the performance of the proposed routing algorithm surpasses the performance of existing algorithms in terms of lowering the congestion, improving average latency and increasing throughput.
机译:半导体行业中不断的技术扩展使系统可靠性成为纳米计算领域中的一个严重问题。在本文中,提出了一种完全自适应的路由算法来克服NoC(片上网络)中的故障。这种称为DINRA-NoC的算法(用于NoC的分布式和新路由算法)是分布式的,容错的和拥塞感知的。首先,每个节点根据每个链路和路由器的状态选择适当的输出,以将数据包路由到邻居路由器。其次,所提出的路由算法考虑了相邻路由器流量的状态以更新拥塞度量。 DINRA-NoC不使用任何VC(虚拟通道),并且没有死锁。使用Noxim模拟器对提出的路由算法进行了模拟。结果表明,尽管存在许多故障路由器/链路,DINRA仍可确保良好的可靠性。另一方面,仿真结果表明,在降低拥塞,改善平均等待时间和增加吞吐量方面,所提出的路由算法的性能优于现有算法。

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