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Influence of Transmission Impairments on the OSMOSIS HPC Optical Interconnect Architecture

机译:传输障碍对OSMOSIS HPC光学互连体系结构的影响

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摘要

We examine the impact of transmission impairments on the performance of the optical supercomputer interconnect architecture, initially proposed in the context of the optical shared memory supercomputer interconnect system (OSMOSIS) project. We study two versions of the aforementioned optical interconnect that differ in terms of the number of semiconductor optical amplifiers (SOAs) used as ON–OFF gates. For practical reasons related to packet arbitration, the size of the crossbar switch of the optical interconnect in this study is limited to 64 ports. The switch is based on a broadcast-and-select architecture and employs DWDM in conjunction with 10 Gb/s intensity modulation/direct detection per wavelength channel. We show, both by experiment and by simulation, that the minimization of the number of SOAs in the optical switch by taking advantage of the cyclic routing capability of optical arrayed waveguide multiplexers/demultiplexers leads to negligible performance deterioration compared to conventional wavelength-space switches that are prohibitive slower and do not use any inherent gain properties like in OSMOSIS.
机译:我们研究了传输障碍对光学超级计算机互连体系结构性能的影响,该提议最初是在光学共享存储器超级计算机互连系统(OSMOSIS)项目的背景下提出的。我们研究了上述光学互连的两个版本,它们在用作开-关门的半导体光放大器(SOA)的数量方面有所不同。出于与数据包仲裁相关的实际原因,本研究中光互连的交叉开关的大小限制为64个端口。该交换机基于广播和选择架构,并采用DWDM与每个波长信道10 Gb / s强度调制/直接检测相结合。通过实验和仿真,我们都表明,与传统的波长空间开关相比,通过利用光学阵列波导多路复用器/多路分解器的循环路由功能来最小化光开关中SOA的数量,导致性能下降的幅度可以忽略不计。速度慢得令人望而却步,并且不使用OSMOSIS中的任何固有增益属性。

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