Predistortion for Frequency-Dependent Nonlinearity of a Laser in RoF Systems

Andres C. Najarro, Sung-Man Kim
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引用次数: 2

Abstract

In radio-over-fiber (RoF) systems, nonlinear compensation is essential to improve performance. Among the several existing nonlinear compensation techniques, we investigate a predistortion technique for a directly modulated laser in an RoF system. First, we obtain the input-to-output response of a directly modulated laser at 160, 820, and 1,540 MHz. The results show that the laser response is dependent on the frequency band. Second, we design an optimal predistortion circuit to compensate for the nonlinear responses of three frequency bands. We design the predistortion circuit with two options: each predistortion circuit for each frequency band and one single predistortion circuit for all the three frequency bands. Finally, we present the simulation results of the predistortion system obtained using a commercial simulator. These results show that the third intermodulation distortion (IMD3) is improved by 0.6–9 dB for the three frequency bands with only a single predistortion circuit.
RoF系统中激光频率相关非线性的预失真
在光纤无线电(RoF)系统中,非线性补偿是提高性能的关键。在现有的几种非线性补偿技术中,我们研究了一种在RoF系统中直接调制激光的预失真技术。首先,我们获得了直接调制激光在160、820和1540 MHz的输入输出响应。结果表明,激光响应随频率的变化而变化。其次,我们设计了一个最优的预失真电路来补偿三个频段的非线性响应。我们设计了两种预失真电路:每个频段都有预失真电路,三个频段都有一个预失真电路。最后,给出了预失真系统在商用模拟器上的仿真结果。结果表明,在三个频带中,仅使用一个预失真电路,第三次互调失真(IMD3)提高了0.6 ~ 9 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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