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BER Performance Analysis of Different O-OFDM Techniques in VLC

机译:VLC中不同O-OFDM技术的性能分析

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Day by day, as people began to use daily communication, visible light communication is changing globally. Visible light communication (VLC) uses a visual modulation method named orthogonal frequency division multiplexing. This paper proposes a comparison of bit error rate (BER) of numerous 16 QAM and 64 QAM hybrid optical OFDM techniques including asymmetrically clipped absolute value optical OFDM (AAO-OFDM), spectral efficiency augmented hybrid asymmetrically clipped optical OFDM (SEA-HACO-OFDM), layered asymmetrically clipped optical OFDM (LACO-OFDM), asymmetrically clipped DC biased optical OFDM (ADO-OFDM) hybrid asymmetrically clipped optical OFDM (HACO-OFDM), asymmetrically clipped DC biased optical OFDM (EADO-OFDM), DC biased optical OFDM (DCO-OFDM), asymmetrically clipped optical OFDM (ACO-OFDM). The principle of each modulation method is demonstrated, and performance is compared in respect of bit error rate. BER is an essential parameter for the characterization of systems quality and efficacy. Signal strength will be better when the bit error rate is too small. Simulation results show that SEA-HACO-OFDM for both cases exhibits the best BER performance in comparison with other modulation techniques.
机译:日复一日,随着人们开始使用日常通信,可见光通信在全球变化。可见光通信(VLC)使用名为正交频分复用的可视调制方法。本文提出了众多16 QAM和64 QAM混合光学OFDM技术的钻头误差率(BER)的比较,包括不对称剪裁绝对值光学OFDM(AAO-OFDM),光谱效率增强杂交不对称的光学OFDM(Sea-Haco-OFDM) ),层状不对称夹光OFDMDM(LACO-OFDM),不对称地剪裁DC偏置光学OFDM(ADO-OFDM)混合不对称的光学OFDM(HACO-OFDM),不对称地剪裁DC偏置光学OFDM(EADO-OFDM),DC偏置光学OFDM(DCO-OFDM),不对称地剪裁光学OFDM(ACO-OFDM)。对每个调制方法的原理进行说明,并以误码率比较性能。 BER是系统质量和疗效表征的重要参数。当误码率太小时,信号强度会更好。仿真结果表明,与其他调制技术相比,两种情况下的海上均法均表现出最佳的BER性能。

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