一种用于光子分组交换的电光控制电路的设计

J. S. van der Merwe, R. Geldenhuys, S. Yu, K. Thakulsukanant, Z. Wang, N. Chi
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引用次数: 0

摘要

我们演示了电光控制系统的设计和实验实现,该系统用于检测到达光交换机输入的数据包,处理数据包的报头,并根据固定长度和可变长度数据包的报头内容控制交换。我们还演示了在光子分组交换(PPS)网络中实现电光交叉点开关的灵活性。此外,通过检测输入端口的数据包并相应地控制开关操作,证明了电光交叉点交换机的争用解决能力。通过将此控制系统集成到交叉点交换机中,可以将竞争数据包路由到再循环的光纤延迟线,并根据所应用的交换算法以灵活的方式控制交换机输出,适用于任何类型的流量。实验采用155mbit /s的报头和10gbit /s的有效载荷,单波长传输,报头和有效载荷之间的保护时间为12.8 ns。演示了误码率小于10-9的PPS。无差错争用分辨率显示,主要信号衰减来自开关单元衰减和放大器ASE,可以通过消除交叉点的光纤到光纤传输损耗来缓解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The design of an electro-optic control circuit for photonic packet switching applications
We demonstrate the design and experimental implementation of an electro-optic control system that is used to detect the arrival of packets at the optical switch input, process the headers of the packets, and control switching according to the header content for both fixed and variable length packets. We also demonstrate the flexibility of the electro-optic crosspoint switch for implementation in a photonic packet switching (PPS) network. Furthermore, contention resolution is demonstrated in the electro-optic crosspoint switch by detecting packets at the input ports and controlling the switch operation accordingly. By incorporating this control system into the crosspoint switch it is possible to route contending packets to a re-circulating fiber delay line and control the switch output in a flexible manner for any type of traffic depending on the applied switching algorithm. The experiments are carried out with 155 Mbit/s headers and 10 Gbit/s payloads transmitted on a single wavelength with a guard time of 12.8 ns between header and payload. PPS with bit error rate (BER) less than 10-9 is demonstrated. Error free contention resolution is shown with the main signal degradation being from the switch cell attenuation and amplifier ASE that can be alleviated by eliminating fiber-to-fiber transmission loss in the crosspoint.
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