利用半导体光放大器提高CO-OFDM系统中紧凑型预失真器的鲁棒性

M. Younes, M. Telescu, N. Tanguy, C. Diouf, P. Morel, S. Azou
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引用次数: 1

摘要

本文重点研究了一种以半导体光放大器(SOA)为特征的相干光正交频分复用(CO-OFDM)发射机中补偿光学调制或放大所固有的非线性效应的数字信号处理技术。特别考虑了两种互补的方法:波峰因子降低和使用数字基带预失真的线性化。提出了数字预失真块的两种可能实现。一是静态补偿的基本解决方案;另一种是由一个并联的双盒数字多项式预失真器(PTB)组成,该双盒数字多项式预失真器并联了一个静态非线性块和一个记忆多项式预失真器。此外,我们表明,除了降低峰均功率比(PAPR)外,变送器动态行为的线性化提供了更好的性能。预失真器或组合预失真器/PAPR减少块的鲁棒性在各种情况下进行了评估。最后,我们提出了通过多点识别或预失真切换策略来提高鲁棒性的解决方案。
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Robustness improvement of compact predistorters in a CO-OFDM system using semiconductor optical amplifiers
This paper focuses on digital signal processing techniques compensating the non-linear effects inherent to optical modulation or amplification within a coherent optical orthogonal frequency division multiplexing (CO-OFDM) transmitter featuring a semiconductor optical amplifier (SOA). Two complementary approaches are specifically considered: crest factor reduction and linearization using a digital baseband predistortion. Two possible implementations are presented for the digital predistortion block. One is the basic solution of static compensation; the other consists in a parallel two-box digital polynomial predistorter (PTB) combining, in parallel, a static nonlinear block with a memory polynomial predistorter. Moreover, we show that a linearization of the dynamic behavior of the transmitter, in addition to peak-to-average power ratio (PAPR) reduction, offers better performance. The robustness of the predistorters or of the combined predistorter/PAPR reduction blocks is assessed for various scenarios. Finally, we propose solutions to improve robustness via multipoint identification or switching strategies for predistortion.
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