支持160gb /s以上码率的全光分组交换技术

N. Calabretta, Hyun-Do Jung, J. H. Llorente, E. Tangdiongga, T. Koonen, H. Dorren
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引用次数: 3

摘要

提出了两种利用全光信号处理实现标签处理器和标签改写器的全光分组交换技术。这两种技术基于两种不同的范式。一种基于波长路由交换[1],另一种基于空间路由交换[2]。这两种技术都采用可扩展的异步标签处理器和标签重写器,能够处理光带内标签地址。我们展示了基于这两种技术的1倍4全光分组交换机。我们报告了基于处理后的带内地址信息的160gb /s分组路由操作以及全光标签擦除和新标签插入操作的技术实验结果。基于实验结果,我们从器件和比特率可扩展性、延迟、功耗、功耗惩罚性能和级联性等方面对两种技术进行了讨论和比较,作为实现全光分组交换节点的关键参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
All-optical packet switching techniques with label rewriting for optical packets at bit-rate beyond 160 Gb/s
We present two all-optical packet switching techniques that utilize all-optical signal processing to implement the label processor and the label rewriter. The two techniques are based on two different paradigms. One is based on wavelength routing switching [1] and the other one on space routing switching [2]. Both techniques employ scalable and asynchronous label processor and label rewriter capable to process optical in-band labeling addresses. We demonstrate a 1times4 all-optical packet switch based on both techniques. We report for both technique experimental results showing the routing operation of the 160 Gb/s packets based on the processed in-band address information, and all-optical label erasing and new label insertion operation. Based on the experimental results, we discuss and compare both techniques in term of devices and bit-rate scalability, latency, power consumption, power penalty performance and cascadability as key parameters for the realization of an all-optical packet switching node.
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