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A Worst Case Performance Model for TDM Virtual Circuit in NoCs

机译:NoC中TDM虚拟电路的最坏情况性能模型

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In Network-on-Chip (NoC), Time-Division-Mutiplexing (TDM) Virtual Circuit (VC) is well recognized as being capable to provide guaranteed services in both latency and bandwidth. We propose a method of modeling TDM based VC by using Network Calculus. We derive a tight upper bound of end-to-end delay and buffer requirement for indivdual VC. The performance analysis using Latency-Rate server is also presented in comparsion with our Performance model for TDM Virtual Circuit in NoCs (Pemvin). We conducted experiments on comparing Pemvin to the Latency-Rate server model. Our experiment results show the improvement of Pemvin on tightening the upper bound of end-to-end delay and buffer requirement.
机译:在片上网络(NoC)中​​,时分多路复用(TDM)虚拟电路(VC)被公认为能够在延迟和带宽方面提供有保证的服务。我们提出了一种使用网络演算对基于TDM的VC建模的方法。对于单个VC,我们得出了端到端延迟和缓冲区要求的严格上限。与Latency-Rate服务器的性能分析也与我们的NoC中TDM虚拟电路的性能模型(Pemvin)进行了比较。我们进行了将Pemvin与Latency-Rate服务器模型进行比较的实验。我们的实验结果表明,Pemvin在收紧端到端延迟和缓冲区需求上限方面有所改进。

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