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TAONoC: A Regular Passive Optical Network-on-Chip Architecture Based on Comb Switches

机译:TAONoC:基于梳状开关的常规无源光片上网络架构

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Optical networks on chip (ONoC) has been proposed as a promising alternative paradigm for electronic NoC with the benefit of optical signaling communications such as ultrahigh bandwidth, extremely low energy consumption, and negligible transmission latency. To accommodate the layout of tile-based chip multicore processors, a torus-based passive ONoC architecture, TAONoC, is proposed in this paper. Relying on the unique designs of three function modules, TAONoC can still support contention-free communication without the need for arbitration. TAONoC employs comb switches instead of general microring resonators (MRs). TAONoC has a low demand for the number of MRs because of the ultrahigh utilization of resonant wavelengths owned by a single MR. Simulation results show that TAONoC performs well under three different synthetic traffic patterns.
机译:已经提出了片上光网络(ONoC)作为电子NoC的有希望的替代范例,它具有光信令通信的优势,例如超高带宽,极低的能耗以及可忽略的传输等待时间。为了适应基于图块的芯片多核处理器的布局,本文提出了一种基于环面的无源ONoC架构TAONoC。依靠三个功能模块的独特设计,TAONoC仍可支持无争用通信,而无需仲裁。 TAONoC使用梳状开关代替普通的微环谐振器(MR)。由于单个MR拥有超高的谐振波长利用率,TAONoC对MR的数量需求较低。仿真结果表明,TAONoC在三种不同的合成交通模式下表现良好。

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