基于叶绿素浓度、通信性能优先的水下SLIPT CSK星座点设计

Takuma Kogo, Y. Kozawa, H. Habuchi
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引用次数: 4

摘要

同时光波信息与功率传输(SLIPT)在构建灵活的水下网络系统以实现水下可见光通信(UVLC)和水下功率传输中起着重要作用。本文将色移键控(CSK)作为水下SLIPT (USLIPT)的一种调制方法。在此基础上,提出了基于时分型接收机的USLIPT优化CSK (OCSK)星座点。本文考虑在减小接收总电流约束的同时,使星座点之间的最小距离最大化的星座设计,以优化通信性能。在本研究中,水下通道中的衰减系数由叶绿素浓度和每种颜色的波长导出,并针对该水下通道优化了所提出的星座点。本文对OCSK的平均误码率和能量收集进行了分析和评价,并将其性能与采用分时接收的开关键控USLIPT进行了比较。结果表明,当发射机与接收机之间的距离为50 m时,发射机波束发散角为6°,接收机孔径为0.05 m时,OCSK和OOK对纯净海水质的误差率均小于1$0^{-6}$,对纯净海水质的误差率均小于OOK。此外,在这种纯海条件下,在发射机处相同的直流偏置电流值下,OCSK的收获能量略大于OOK。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chlorophyll concentration-based CSK constellation point design for underwater SLIPT with priority on communication performance
Simultaneous light wave information and power transfer (SLIPT) plays an important role in constructing a flexible underwater network system to achieve both underwater visible light communication (UVLC) and underwater power transfer. In this paper, color shift keying (CSK) is considered as a modulation method of underwater SLIPT (USLIPT). Also, optimized CSK (OCSK) constellation points are presented for USLIPT using time splitting receiver. This paper considers the constellation design to maximize the minimum distance between the constellation points while mitigating total received current constraint for communication performance optimization. In this study, the attenuation coefficient in the underwater channel is derived from the chlorophyll concentration and the wavelength of each color, and the proposed constellation points are optimized for this underwater channel. In this paper, the average bit-error rate and harvested energy are analyzed and evaluated for the OCSK, and the performances are compared with USLIPT with an on-off keying (OOK) using time splitting receiver. The results show that the error rates of OCSK and OOK are less than 1$0^{-6}$ for the water quality of pure sea, and that of OCSK is less than that of OOK for the water quality of clear ocean when the distance between the transmitter and receiver, the full width transmitter beam divergence angle and the receiver aperture diameter are 50 m, 6 degrees and 0.05 m, respectively. Furthermore, in this pure sea condition, the harvest energy of OCSK was found to be slightly greater than that of OOK for the same DC bias current value at the transmitter.
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