Li Ming, Gao Wenbo, Cvijetic Milorad
Appl Opt. 2017 Jan 10;56(2):284-297. doi: 10.1364/AO.56.000284.
As a continuation of our previous work [Appl. Opt.54, 1453 (2015)APOPAI0003-693510.1364/AO.54.001453] in which we have studied the performance of coherent free space optical (FSO) communication systems operating over a horizontal path, in this paper we study the coherent FSO system operating over a general slant path. We evaluated system bit-error-rate (BER) in the case when the quadrature phase-shift keying (QPSK) modulation format is applied and when an adaptive optics (AO) system is employed to mitigate the air turbulence effects for both maritime and terrestrial air transmission scenarios. We adopted a multiple-layer scheme to efficiently model the FSO slant-path links. The atmospheric channel fading was characterized by the wavefront phase distortions and the log-amplitude fluctuations. We derived analytical expressions to characterize log-amplitude fluctuations of air turbulence by asserting the aperture averaging within the frame of the multiple-layer model. The obtained results showed that use of AO enabled improvement of system performance for both uplinks and downlinks, and also revealed that it is more beneficial for the FSO downlinks. Also, AO employment brought larger enhancements in BER performance for the maritime slant-path FSO links than for the terrestrial ones, with an additional striking increase in performance when the AO correction is combined with the aperture averaging.
作为我们之前工作[《应用光学》54, 1453 (2015),APOPAI0003 - 6935,10.1364/AO.54.001453]的延续,在之前的工作中我们研究了水平路径上相干自由空间光(FSO)通信系统的性能,本文我们研究了一般倾斜路径上的相干FSO系统。我们评估了在应用正交相移键控(QPSK)调制格式以及采用自适应光学(AO)系统来减轻海洋和陆地大气传输场景中的大气湍流影响时系统的误码率(BER)。我们采用多层方案来有效模拟FSO倾斜路径链路。大气信道衰落通过波前相位畸变和对数幅度起伏来表征。我们通过在多层模型框架内断言孔径平均来推导表征大气湍流对数幅度起伏的解析表达式。所得结果表明,使用AO可提高上行链路和下行链路的系统性能,并且还表明这对FSO下行链路更有益。此外,与陆地倾斜路径FSO链路相比,AO的使用在海洋倾斜路径FSO链路上带来的BER性能提升更大,当AO校正与孔径平均相结合时,性能会有额外显著提高。