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Optically processed self-routing, synchronization, and contention resolution for 1-D and 2-D photonic switching architectures

机译:一维和二维光子交换架构经过光学处理的自路由,同步和竞争解决方案

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摘要

The use of optical processing to perform switch routing functions permits real-time routing of packets at high speed. The architecture of a 2*2 photonic packet switching node using optically processed fixed-directory routing, contention resolution using deflection routing, and synchronization is presented. Simplified optically processed self-routing procedures are found for banyan and lattice networks. Although lattice networks require a larger number of switching elements than banyan networks, they have a simpler interconnection field, and unlike banyan networks, the self-routing rule for lattices can avoid any internal blocking. The layout of a self-routing 2-D lattice, using 2*2 switches and a smart pixel, is described. Based on a first-arrival self-routing rule, an additional processing logic is required to perform routing.
机译:通过使用光学处理来执行交换机路由功能,可以高速实时地对数据包进行路由。提出了使用光处理的固定目录路由,使用偏转路由的争用解决方案以及同步的2 * 2光子数据包交换节点的体系结构。对于榕树和晶格网络,发现了经过简化的光学处理的自路由过程。尽管晶格网络比榕树网络需要更多的交换元素,但它们具有更简单的互连字段,并且与榕树网络不同,晶格的自路由规则可以避免任何内部阻塞。描述了使用2 * 2开关和智能像素的自路由2-D晶格的布局。基于先到达自动路由规则,需要附加的处理逻辑来执行路由。

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