论文标题

使用共振光束的NLOS传输分析

NLOS Transmission Analysis for Mobile SLIPT Using Resonant Beam

论文作者

Liu, Mingqing, Xia, Shuaifan, Xiong, Mingliang, Xu, Mengyuan, Liu, Qingwen, Deng, Hao

论文摘要

同时轻波信息和电力传输(SLIPT)是满足下一代网络中可持续电源和高速数据传输需求的潜在方法。尽管基于谐振的光束滑移(RB-SLIPT)可以同时实现高功率能量传递,高速数据传输,人体安全和自我对准,但尚未研究在非线(NLOS)传播下的移动传输通道(MTC)分析。在本文中,我们提出了用于反射器辅助NLOS的RB-SLIPT的分析模型和仿真工具,其中可以通过在任意位置和姿态角度的接收器获得NLOS MTC的传输损耗和精确的束场曲线。我们建立了依靠完全衍射理论的分析模型,用于倾斜或离轴平面之间的光束传播。然后,我们在模拟中提供了三种数值方法(即基于NUFFT的基于NUFFT,基于立方插值的方法和线性插值方法)。此外,要处理有限的计算内存和高采样要求之间的矛盾,我们提出了一种多跳滑窗方法,这可以将采样数减少数千个。最后,数值结果表明,在NLOS方案中,RB-SLIPT可以实现$ 4 $ W充电功率和$ 12 $ BIT/S/HZ数据速率。

Simultaneous lightwave information and power transfer (SLIPT) is a potential way to meet the demands of sustainable power supply and high-rate data transfer in next-generation networks. Although resonant beam-based SLIPT (RB-SLIPT) can realize high-power energy transfer, high-rate data transfer, human safety, and self-alignment simultaneously, mobile transmission channel (MTC) analysis under non-line-of-sight (NLOS) propagation has not been investigated. In this paper, we propose analytical models and simulation tools for reflector-assisted NLOS transmission of RB-SLIPT, where transmission loss and accurate beam field profile of NLOS MTC can be obtained with a receiver at arbitrary positions and attitude angles. We establish analytical models relying on full diffraction theory for beam propagation between tilted or off-axis planes. Then, we provide three numerical methods (i.e., NUFFT-based, cubic interpolation-based, and linear interpolation-based methods) in simulations. Moreover, to deal with the contradiction between limited computing memory and high sampling requirements for long-range transmission analysis, we propose a multi-hop sliding window approach, which can reduce the sampling number by a factor of thousands. Finally, numerical results demonstrate that RB-SLIPT can achieve $4$W charging power and $12$bit/s/Hz data rate over $2$m distance in NLOS scenarios.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源