首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Optimization of transmission performance of 10-Gb/s optical vestigial sideband signals using electrical dispersion compensation by numerical simulation
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Optimization of transmission performance of 10-Gb/s optical vestigial sideband signals using electrical dispersion compensation by numerical simulation

机译:利用电色散补偿通过数值模拟优化10 Gb / s光学残留边带信号的传输性能

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摘要

We analyze the transmission performance of vestigial sideband (VSB) signals with electrical dispersion compensator (EDC) by numerical simulations. Optimizing the dispersion and bandwidth of EDC, and the extinction ratio and chirp of the modulator, we can improve the dispersion tolerance of VSB signals. VSB signals with negative chirp have better transmission performance while VSB signals with positive chirp are advantageous to the implementation of EDC due to low optimum dispersion in EDC. VSB transmission with EDC can be a very cost-effective solution for 10-Gb/s single-channel systems with the maximum transmission distance of 320 km.
机译:我们通过数值模拟分析了带有电色散补偿器(EDC)的残留边带(VSB)信号的传输性能。优化EDC的色散和带宽,以及调制器的消光比和线性调频,可以提高VSB信号的色散容限。具有负线性调频的VSB信号具有更好的传输性能,而具有正线性调频的VSB信号由于在EDC中的最佳色散较低而有利于EDC的实现。对于最大传输距离为320 km的10 Gb / s单通道系统,带EDC的VSB传输可以是一种非常经济高效的解决方案。

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