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Optics vs. Electronics in Future High-Capacity Switches/Routers

机译:未来高容量交换机/路由器中的光学与电子产品

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The rapid growth of the Internet traffic demand is bringing the current electronic switches closer to their intrinsic technological limits, which may be overcome by optical technologies. Although optical packet switching has been widely studied in academia; the limited processing and buffering capabilities available in the optical domain makes the implementation of an all optical packet switch difficult in practice. We considered a hybrid (electro/optic) switching architecture, relying on an all-optical switching fabric, aiming to understanding the tradeoffs between current photonic and electronic technologies. We consider both the classical fixed-size synchronous paradigm and the asynchronous operation mode, which may suit better to the optical technologies. Buffers organized according to either an electronic FIFO (First Input First Output) paradigm or a photonic FDL (Fiber Delay Line) mechanism are analyzed and compared.
机译:互联网业务需求的快速增长是将当前的电子开关越接近其内在技术限制,这可能通过光学技术克服。虽然光学包交换已被广泛研究在学术界;光学域中可用的有限处理和缓冲能力使得在实践中实现了所有光学包切换。我们考虑了混合动力(电镀/光学)切换架构,依赖于全光开关面料,旨在了解当前光子和电子技术之间的权衡。我们考虑经典的固定尺寸同步范式和异步操作模式,可能适合光学技术。分析和比较根据电子FIFO(第一输入第一输出)范式或光子FDL(光纤延迟线)机构根据电子FIFO(第一输入首先输出)机构组织的缓冲器。

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