Zhang Jiankun, Ding Shengli, Zhai Huili, Dang Anhong
Opt Express. 2014 Dec 29;22(26):32482-8. doi: 10.1364/OE.22.032482.
In wireless optical communications (WOC), polarization multiplexing systems and coherent polarization systems have excellent performance and wide applications, while its state of polarization affected by atmospheric turbulence is not clearly understood. This paper focuses on the polarization fluctuations caused by atmospheric turbulence in a WOC link. Firstly, the relationship between the polarization fluctuations and the index of refraction structure parameter is introduced and the distribution of received polarization angle is obtained through theoretical derivations. Then, turbulent conditions are adjusted and measured elaborately in a wide range of scintillation indexes (SI). As a result, the root-mean-square (RMS) variation and probability distribution function (PDF) of polarization angle conforms closely to that of theoretical model.
在无线光通信(WOC)中,偏振复用系统和相干偏振系统具有优异的性能和广泛的应用,而大气湍流对其偏振态的影响尚不清楚。本文聚焦于无线光通信链路中由大气湍流引起的偏振波动。首先,介绍了偏振波动与折射率结构参数之间的关系,并通过理论推导得到了接收偏振角的分布。然后,在很宽的闪烁指数(SI)范围内精心调整和测量湍流条件。结果表明,偏振角的均方根(RMS)变化和概率分布函数(PDF)与理论模型的结果非常吻合。