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A Novel Topology-Independent Router Architecture to Enhance Reliability and Performance of Networks-on-Chip

机译:一种独立的拓扑路由器架构,可以增强芯片网络的可靠性和性能

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We present the partial virtual-channel sharing (PVS) NoC architecture which reduces the impact of fault on system performance and can also tolerate the faults on routing logic. A fault in one component makes the fault-free connected components out of use and this in turn leads to considerable performance degradation. Improving utilization of resources is a key to either enhance or sustain performance with minimal overheads in case of fault or overloading. In the proposed architecture autonomic virtual-channel buffer sharing is implemented. The runtime allocation of the buffers depends on incoming load and fault occurrence. This technique can be used in any NoC topology and for both 2D and 3D NoCs. The synthesis results for an integrated video conference application demonstrate significant reduction in average packet latency compared to existing VC-based NoC architecture. Extensive quantitative simulation results for synthetic benchmarks are also carried out. Furthermore, the simulation results reveal that the PVS architecture improves the performance significantly under fault free conditions compared to other VC architectures.
机译:我们介绍了部分虚拟通道共享(PVS)NoC架构,可降低故障对系​​统性能的影响,也可以容忍路由逻辑上的故障。一个组件中的故障使故障连接的组件失去使用,这又导致相当大的性能下降。提高资源利用是在故障或过载情况下以最小的开销增强或维持性能的关键。在建议的体系结构中,实现了自主主义虚拟信道缓冲区共享。缓冲区的运行时分配取决于传入的负载和故障发生。该技术可用于任何NOC拓扑和2D和3D NOC。与现有的基于VC的NoC架构相比,集成视频会议应用程序的合成结果表明平均数据包延迟的显着降低。还进行了对合成基准的广泛定量仿真结果。此外,仿真结果表明,与其他VC架构相比,PVS架构在无故障条件下显着提高了性能。

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