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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Optimizing amplifier spacing to improve performance in RZ-rectangular pulse based 10 Gb/s single channel dispersion managed optical communication system
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Optimizing amplifier spacing to improve performance in RZ-rectangular pulse based 10 Gb/s single channel dispersion managed optical communication system

机译:优化放大器间距以提高基于RZ矩形脉冲的10 Gb / s单通道色散管理型光通信系统的性能

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摘要

In this paper, we optimize the inter-amplifier spacing in combination with duty cycle of RZ data format and EDFAs power so that link length of system can be maximized. The results for EDFA amplifier placement in 10 Gbps single channel dispersion managed optical communication system have been presented. By increasing the length of standard single mode fiber of dispersion 16 psm/km in proportion to the increase in length of compensating fiber of dispersion -80 psm/km, the pre-, post- and symmetrical-dispersion compensation schemes of the system have been compared. Further, schemes are observed at 8, 10 and 12 dBm values of EDFA power in the link with different duty cycle values of RZ optical pulse in the range of 0.2-0.8 with step size of 0.2 in relation to amplifier spacing to get lower value of bit error rate and timing jitter. The graphical results obtained show strong relationship among duty cycle of RZ optical pulse, EDFA power and, dispersion compensation scheme.
机译:在本文中,我们结合RZ数据格式的占空比和EDFA功率优化了放大器之间的间距,以使系统的链路长度最大化。提出了将EDFA放大器放置在10 Gbps单通道色散管理的光通信系统中的结果。通过与色散补偿光纤的长度增加-80 ps / nm / km的长度成比例地增加色散的标准单模光纤的长度16 ps / nm / km,可以实现色散前,后和对称色散补偿方案该系统进行了比较。此外,在链路中以EDFA功率的8、10和12 dBm值观察到的方案,RZ光脉冲的不同占空比值在0.2-0.8范围内,相对于放大器间距的步长为0.2,以获得较低的。误码率和定时抖动。获得的图形结果表明,RZ光脉冲的占空比,EDFA功率与色散补偿方案之间存在很强的关系。

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