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Optical OFDM based on the fractional Fourier transform for an indoor VLC system

机译:基于室内VLC系统的分数傅里叶变换的光学OFDM

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The fractional Fourier transform (FRFT), which is a family of linear transformations generalizing the classical Fourier transform, has been used in the fields of filter design, signal processing, phase retrieval, and pattern recognition due to its unique properties. The FRFT of a signal can be interpreted as a decomposition of the signal in terms of chirps. In this paper, for the first time, to the best of our knowledge, we introduce an optical FRFT (OFRFT)-based orthogonal frequency division multiplexing (OFDM) visible light communications (VLC) system and compare numerical results with a direct current-biased optical (DCO)-OFDM system. First, the optimal fractional order is calculated to improve the performance of the proposed system by minimizing the bit error rate (BER). The numerical results show that OFRFT-OFDM with the optimal fractional order offers a significantly improved BER performance compared with DCO-OFDM under the same computational complexity and spectral efficiency. In addition, the peak to average power ratio, which is an issue in light emitting diode-based VLC systems, is reduced by <1 dB using OFRFT-OFDM for the same BER compared with DCO-OFDM. (C) 2021 Optical Society of America
机译:分数傅里叶变换(FRFT)是经典傅里叶变换的一系列线性变换,由于其独特的性质,已被应用于滤波器设计、信号处理、相位恢复和模式识别等领域。信号的FRFT可以解释为信号在啁啾方面的分解。在本文中,我们首次介绍了一种基于光学FRFT(OFRFT)的正交频分复用(OFDM)可见光通信(VLC)系统,并将数值结果与直流偏置光学(DCO)OFDM系统进行了比较。首先,计算最优分数阶,通过最小化误码率(BER)来提高系统的性能。数值结果表明,在计算复杂度和频谱效率相同的情况下,与DCO-OFDM相比,具有最佳分数阶的OFRFT-OFDM具有显著改善的误码率性能。此外,与DCO-OFDM相比,使用OFRFT-OFDM在相同的误码率下,峰值平均功率比降低了<1 dB。峰值平均功率比是基于发光二极管的VLC系统中的一个问题。(2021)美国光学学会

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