首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Comparison of digital signal processing, feedback and feedforward compensation technique for dual polarization 128-QAM radio over fiber link
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Comparison of digital signal processing, feedback and feedforward compensation technique for dual polarization 128-QAM radio over fiber link

机译:光纤链路双极化128-QAM收音机的数字信号处理,反馈和前馈补偿技术的比较

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摘要

During the last few years, there is an abrupt increase in data transfer rate and the need for a reliable technology to fulfil this requirement. The future technology for the 5G network will be using the radio over fiber (RoF) technology. The nonlinear distortion is a menace degrading radio over fiber link performance and this can be improved by the compensation techniques. In this paper, we have developed and analyzed digital signal processing (DSP), feedback and feedforward compensation technique for dual polarization 128 QAM (DP-128QAM) RoF link (200 km) and observe that the performance parameters get improved significantly. The error vector magnitude (EVM) is similar to 19% without compensation which is reduced to similar to 7.56%, similar to 11.05% and similar to 17.64% for DSP, feedback and feedforward technique respectively. The RoF link has a bit error rate (BER) of 0.45 which is decreased by - 0.0002, - 0.100 and - 0.33 for DSP, feedback and feedforward technique respectively. The gain of an output spectrum of a received signal is also improved with 10 dB m than - 30 dBm without compensation. All these simulation and analysis have been carried out on OptiSystem 13.0 Platform.
机译:在过去几年中,数据传输速率突然增加,需要一种可靠的技术来满足这一要求。 5G网络的未来技术将使用无线电(ROF)技术。非线性失真是威胁在纤维链路性能上降低的无线电,并且可以通过补偿技术来提高。在本文中,我们开发和分析了数字信号处理(DSP),反馈和前馈补偿技术128 QAM(DP-128QAM)ROF链路(200 km)并观察到性能参数显着改善。误差向量幅度(EVM)类似于19%而无需补偿,其降低至类似于7.56%,类似于11.05%,而且分别与DSP,反馈和前馈技术相似的17.64%。 ROF链路的误码率(BER)为0.45,其分别为0.0002, - 0.100和-0.33,分别用于DSP,反馈和馈电技术。在不补偿的情况下,接收信号的输出频谱的增益也提高了10dB m mm-30 dBm。所有这些模拟和分析都已在OptiSystem 13.0平台上进行。

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