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A novel architecture of optical code label processing in parallel designed for all optical routing system

机译:针对所有光路由系统并行设计的新颖光代码标签处理架构

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摘要

A novel architecture of optical code label routing is designed based on optical code division multiplexing techniques, which performs the data packet forwarding and processing in parallel with a way of making the label and pay load encoded and decoded separately. It uses optical polarity characteristics to realize the separation of the label and payload, employs fiber Bragg grating to encode/decode the label and payload so as to process them in parallel, and makes the forwarding and routing process realized in the optical domain. In the core router, the separation of the label and payload guarantees that the switch processing only includes the short label code recognition, without processing the payload. The payload recognition is carried out in the edge router. Thus, the router can simplify the processing of encoding and decoding in the core router, accelerating the switching, and increase the throughput greatly. Moreover, the novel routing scheme not only supports the varying of data packets, transparent transmission, fine granularity switching, and so on, but also is suitable for the aggregation of data service. It is attractive for the future development of all optical routing.
机译:基于光码分复用技术,设计了一种新颖的光码标签路由体系结构,该结构并行进行数据包的转发和处理,同时使标签和有效载荷分别编码和解码。它利用光极性特性实现标签和有效载荷的分离,利用光纤布拉格光栅对标签和有效载荷进行编码/解码,以并行处理它们,并在光域中实现转发和路由过程。在核心路由器中,标签和有效载荷的分离保证了交换处理仅包括短标签代码识别,而没有处理有效载荷。有效载荷识别在边缘路由器中执行。因此,路由器可以简化核心路由器中的编码和解码处理,加速切换,并大大提高吞吐量。此外,新颖的路由方案不仅支持数据分组的变化,透明传输,精细粒度交换等,而且还适合于数据服务的聚合。它对所有光路由的未来发展具有吸引力。

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