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基于分析链路带宽模型的非视距紫外通信方形阵列接收

Analytical link bandwidth model based square array reception for non-line-of-sight ultraviolet communication.

作者信息

Qin Heng, Zuo Yong, Li Feiyu, Cong Risheng, Meng Lingchao, Wu Jian

出版信息

Opt Express. 2017 Sep 18;25(19):22693-22703. doi: 10.1364/OE.25.022693.

Abstract

An analytical model is presented firstly in this paper to formulate the link bandwidth of non-line-of-sight (NLOS) ultraviolet (UV) channel. The link bandwidth is characterized by three geometrical parameters including transmitter (Tx) elevation angle, receiver (Rx) field of view (FOV), and transceiver separation distance, and further expressed as a closed-form through software-aided numerical fitting. Comparison with the link bandwidth obtained via a Monte Carlo model is done to verify the feasibility of this model. Based on this model, we investigate the diversity reception on the NLOS UV communication from a new perspective. A spatially squared distributed Rx array is customized for the NLOS UV channel. Lower temporal broadening is enabled, leading to a higher link bandwidth. Numerical results suggest that over 100% improvement of the link bandwidth is predicted by the square array reception and the ratio grows rapidly with the narrowing of Tx beam divergence. Therefore, this paper provides a guide for link analysis and receiver design for NLOS UV communication.

摘要

本文首先提出了一种分析模型,用于确定非视距(NLOS)紫外(UV)信道的链路带宽。链路带宽由三个几何参数表征,包括发射机(Tx)仰角、接收机(Rx)视场(FOV)和收发信机间距,并通过软件辅助数值拟合进一步表示为闭式形式。通过与经由蒙特卡罗模型获得的链路带宽进行比较,验证了该模型的可行性。基于此模型,我们从一个新的角度研究了非视距紫外通信中的分集接收。针对非视距紫外信道定制了一个空间平方分布的接收机阵列。实现了更低的时间展宽,从而带来更高的链路带宽。数值结果表明,方形阵列接收预计可使链路带宽提高超过100%,且该比率随着发射机波束发散的变窄而迅速增长。因此,本文为非视距紫外通信的链路分析和接收机设计提供了指导。

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