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A Fault-Tolerant Deflection Routing for Network-on-Chip

机译:片上网络的容错偏转路由

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Network-on-Chip (NoC) has become a promising design methodology for the modern on-chip communication infrastructure of many-core system. To guarantee the reliability of traffic, effective fault-tolerant scheme is critical to NoC systems. In this paper, we propose a fault tolerant deflection routing (FTDR) to address faults on links and router by redundancy technique. The proposed FTDR employs backup links and a redundant fault-tolerant unit (FTIJ) at router-level to sustain the traffic reliability of NoC. Experimental results show that the proposed FTDR yields an improvement of routing performance and fault-tolerant capability over the reported fault-tolerant routing schemes in average flit deflection rate, average packet latency, saturation throughput and reliability by up to 13.5%, 9.8%, 10.6% and 17.5%, respectively. The layout area and power consumption are increased merely 3.5% and 2.6%.
机译:片上网络(NoC)已成为多核系统现代片上通信基础设施的一种有前途的设计方法。为了保证流量的可靠性,有效的容错方案对于NoC系统至关重要。在本文中,我们提出了一种容错偏转路由(FTDR),以通过冗余技术解决链路和路由器上的故障。拟议的FTDR在路由器级别采用备用链路和冗余容错单元(FTIJ)来维持NoC的流量可靠性。实验结果表明,与已报告的容错路由方案相比,拟议的FTDR可以提高路由性能和容错能力,其平均分支偏转率,平均数据包延迟,饱和吞吐量和可靠性分别提高了13.5%,9.8%,10.6。 %和17.5%。布局面积和功耗仅增加了3.5%和2.6%。

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