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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Design and Implementation of Optical Signal Reinstatement Technique for High DPSK RZ Transceiver Scheme
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Design and Implementation of Optical Signal Reinstatement Technique for High DPSK RZ Transceiver Scheme

机译:高DPSK RZ收发器方案光信号恢复技术的设计与实现

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摘要

Optical signal reinstatement (OSR) is a common technique used in high-speed communication systems. OSR can be achieved using various techniques such as; semiconductor optical amplifiers, optical parametric amplifiers, optical loop mirror, and etc. The existing OSR techniques of a maximum speed of 40Gb/s for long haul communication of 300km transmission distance offer the 10(-10) BER of and noise (phase and amplitude) mitigation. Presently, the existing OSR techniques require low BER, strong noise rejection for more than 40Gb/s degraded signal. In this work, optical signal restoration technique is developed for 100Gb/s degraded signal for 400km transmission distance. The proposed technique is designed using 2R and PSA. The benefit for using 2R with PSA is that 2R (re-amplify regenerate) the signal, while PSA is used to mitigate the amplitude and phase noises respectively. The developed technique is implemented for DPSK-RZ transceiver system and offers the BER of 10(-21) and noise mitigation of more than 90% for DPSK-RZ transceiver system.
机译:光信号恢复(OSR)是高速通信系统中使用的常用技术。可以使用各种技术实现OSR;半导体光学放大器,光学参数放大器,光学回路镜等。长途通信300km传输距离的最大速度的现有OSR技术为300km传输距离提供10(-10)BER和噪声(相位和幅度)缓解。目前,现有的OSR技术需要低BER,强烈的噪声抑制超过40GB / s的降低信号。在这项工作中,开发了光信号恢复技术,用于100GB / S降解信号,用于400km传输距离。所提出的技术使用2R和PSA设计。使用PSA的使用2R的益处是2R(重新放大再生)信号,而PSA分别用于减轻幅度和相位噪声。开发技术为DPSK-RZ收发器系统实施,并提供10(-21)的BER,并为DPSK-RZ收发器系统提供超过90%的噪声缓解。

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