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Criteria for Selecting Subsystem Configuration in Creating Large-Scale OXCs

机译:创建大型OXC时选择子系统配置的标准

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摘要

We investigate in detail the performances of different subsystem-based modular optical cross-connect (OXC) architectures that can be expanded to cover large port counts. They include ring, linear, and main/junction types, all of which are proved to substantially reduce total hardware scale compared to the conventional architecture. The reduction in necessary number of wavelength selective switches (WSSs) can be more than 70% for OXCs with about 50 x 50 ports, where the accepted traffic offset is about 2%. The maximum number of WSSs traversed by optical paths is also reduced by more than 50% for Pan-European (26 nodes) and 5 x 5 regular mesh networks.
机译:我们将详细研究不同的基于子系统的模块化光学交叉连接(OXC)体系结构的性能,这些体系结构可以扩展为涵盖大量端口。它们包括环型,线性型和主/结型,与传统架构相比,所有这些都被证明可以大大减少总的硬件规模。对于具有约50 x 50端口的OXC,所需的波长选择开关(WSS)数量的减少可以超过70%,其中可接受的流量偏移约为2%。对于泛欧洲(26个节点)和5 x 5常规网格网络,通过光路穿越的WSS的最大数量也减少了50%以上。

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