9 May 2016 Selective mapping and restorable clipping joint scheme for light-emitting diode nonlinearity alleviation in visible light communication system
Chaowen Yan, Jianping Wang, Huimin Lu, Yinjia Shi, Yini Zhang
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Abstract
A joint algorithm, integrating selective mapping (SLM) and restorable clipping (RC), is proposed for the direct current-biased optical orthogonal frequency division multiplexing (DCO-OFDM) and visible light communication (VLC) system to reduce the nonlinearity impacts of light-emitting diode (LED) aggravated by high peak-to-average power ratio (PAPR) and DC-bias. The performance of DCO-OFDM VLC system is analyzed and discussed with different techniques of LED nonlinearity alleviation. The simulation results show that compared to the original DCO-OFDM VLC system, the system with the proposed scheme can achieve about 4.8 dB improvement of PAPR reduction and 7 dB improvement of bit error rate (BER) performance. The reason is that the signals acquiring the desired shape in LED linear region can be recovered correctly without distortion induced by LED nonlinearity. It is demonstrated that the proposed SLM-RC technique effectively reduces not only PAPR but also the impacts of LED nonlinearity without BER deterioration.
© 2016 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2016/$25.00 © 2016 SPIE
Chaowen Yan, Jianping Wang, Huimin Lu, Yinjia Shi, and Yini Zhang "Selective mapping and restorable clipping joint scheme for light-emitting diode nonlinearity alleviation in visible light communication system," Optical Engineering 55(5), 056106 (9 May 2016). https://doi.org/10.1117/1.OE.55.5.056106
Published: 9 May 2016
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KEYWORDS
Light emitting diodes

Spatial light modulators

Orthogonal frequency division multiplexing

Telecommunications

Distortion

Visible radiation

Quadrature amplitude modulation

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