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Adaptive predistortion technique for nonlinear LED with dimming control in VLC system

机译:VLC系统中具有调光控制的非线性LED自适应预失真技术

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摘要

Smart city planners pay more attention towards visible light communication (VLC) system to achieve seamless high speed connectivity. A light emitting diode (LED) acts as a transmitter in VLC system. However, the nonlinear characteristics and dimming nature of LED limits the performance of the VLC system by degrading the quality of transmitted signal. In this paper, we propose an adaptive-learning-architecture (ALA) based predistortion technique to estimate and compensate for LED nonlinearities as well as increase the spectral efficiency of a VLC system. A DC-biased optical orthogonal frequency division multiplexing (DCO-OFDM) signal is considered. The performance with and without predistorter is analysed assuming optical line-of-sight (LOS) channel. It is shown that degradation due to LED nonlinearity can be compensated by using ALA-based predistortion, and the overall Predistorter-LED system is able to approach near-linear performance. Further, we investigate the impact of dimming on the performance of nonlinear LED in VLC system. Simulation results based on symbol error rate (SER), amplitude distortion (AM/AM) curves and constellation plots validate the performance of our proposed technique.
机译:智慧城市规划者更加关注可见光通信(VLC)系统,以实现无缝的高速连接。发光二极管(LED)在VLC系统中充当发射器。但是,LED的非线性特性和调光特性会降低发射信号的质量,从而限制了VLC系统的性能。在本文中,我们提出了一种基于自适应学习体系结构(ALA)的预失真技术,以估计和补偿LED非线性并增加VLC系统的频谱效率。考虑了DC偏置的光正交频分复用(DCO-OFDM)信号。假设有光学视线(LOS)通道,则分析有无预失真器的性能。结果表明,可以通过使用基于ALA的预失真来补偿由于LED非线性引起的劣化,并且整个Predistorter-LED系统都能够接近线性性能。此外,我们研究了调光对VLC系统中非线性LED性能的影响。基于符号错误率(SER),幅度失真(AM / AM)曲线和星座图的仿真结果验证了我们提出的技术的性能。

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