Experimental Demonstration of Non-Hermitian Symmetry for DC-SC-FDM in UOWC Systems

K. Puntsri, E. Khansalee, Hanawa Masanori
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引用次数: 0

Abstract

This study demonstrates the high spectrum efficiency of DC offset single-carrier frequency division multiplexing (DC-SC-FDM) for underwater optical wireless communications (UOWC). I and Q components were separately transmitted using dual lasers. As a result, the requirement of Hermitian symmetry is alleviated, and the computation time latency is reduced. The Gram–Schmidt orthogonalization procedure was adopted to address the I and Q orthogonality. The system comprises a 1024-point inverse fast Fourier transform (IFFT), a cyclic prefix of 32 samples, and a digital-to-analog converter (DAC) of 400 Msps, and laser diodes possess a wavelength of 553 nm with a power of 150 mW. The study includes real transmissions in a freshwater communication channel and reports experimental results. In addition, the bit error rate has been evaluated. The results show that at the forward error correction (FEC) limit, a communication distance of 10 m can be achieved. A peak-to-average power ratio reduction of 4.96 dB is reached.
UOWC系统中DC-SC-FDM非厄米对称的实验证明
本研究证明了用于水下光无线通信(UOWC)的直流偏置单载波频分复用(DC- sc - fdm)的高频谱效率。采用双激光器分别传输I和Q分量。该方法减轻了对厄米对称的要求,降低了计算时延。采用Gram-Schmidt正交法处理I和Q的正交性。该系统包括1024点快速反傅立叶变换(IFFT)、32个采样的循环前缀和400 Msps的数模转换器(DAC),激光二极管的波长为553 nm,功率为150 mW。该研究包括在淡水通信信道中的真实传输,并报告了实验结果。此外,还对误码率进行了评估。结果表明,在前向纠错(FEC)极限下,可以实现10 m的通信距离。达到峰值-平均功率比降低4.96 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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