Non-line-of-sight ultraviolet communications over atmospheric turbulence channels

Maryam Haghighi Ardakani, A. Heidarpour, M. Uysal
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引用次数: 10

Abstract

Ultraviolet (UV) communication enables non-line-of sight (NLOS) outdoor wireless connectivity and is particularly desirable to relax or eliminate pointing and tracking requirements of infrared links. In the current literature, atmospheric turbulence effects are typically ignored under the assumption of short link distances and clear weather conditions. In this paper, we address the statistical modeling of turbulence experienced in NLOS UV links. We assume that the NLOS link consists of two line-of-sight (LOS) paths each of which experiences log-normal distributed fading. We obtain a closed-form expression for the probability density function of turbulence induced fading. Based on the derived expression, we investigate bit error rate performance for different system configurations. Numerical simulations are further presented to confirm the accuracy of our derivation.
大气湍流信道上的非视距紫外通信
紫外线(UV)通信可实现非视线(NLOS)户外无线连接,特别适合放松或消除红外链路的指向和跟踪要求。在目前的文献中,大气湍流的影响通常在短链接距离和晴朗的天气条件下被忽略。在本文中,我们讨论了NLOS UV链路湍流经历的统计建模。我们假设NLOS链路由两条视距(LOS)路径组成,每条路径都经历对数正态分布衰落。得到了湍流诱导衰落的概率密度函数的封闭表达式。基于导出的表达式,我们研究了不同系统配置下的误码率性能。数值模拟进一步证实了我们的推导的准确性。
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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