Xu Guanjun
Opt Express. 2019 Apr 29;27(9):13344-13356. doi: 10.1364/OE.27.013344.
Free space optical (FSO) communication is a promising technology for future deep space exploration, but it encounters coronal turbulence during superior solar conjunction. In this paper, the bit-error rate (BER) performance of deep space FSO communication systems is evaluated for optical waves propagating in the non-Kolmogorov coronal turbulence. By virtue of its high energy efficiency, the pulse position modulation (PPM) technique is adopted to mitigate the influence of turbulence under lognormal distribution channels. The effects of the parameters of the coronal turbulence and of the FSO system, such as the turbulence outer scale, spectral index, symbol number, data bit rate, equivalent load resistor, and average gain, on the BER are investigated and discussed in this paper. In addition, the performance improvement from M-ary PPM and binary phase-shift keying subcarrier intensity modulation is studied. The results of a numerical evaluation illustrate that a deep space FSO communication system with PPM scheme can well be used to mitigate the impact of coronal turbulence.
自由空间光(FSO)通信是未来深空探测中一项很有前景的技术,但在日凌期间会遇到日冕湍流。本文针对在非柯尔莫哥洛夫日冕湍流中传播的光波,评估了深空FSO通信系统的误码率(BER)性能。由于其高能效,采用脉冲位置调制(PPM)技术来减轻对数正态分布信道下湍流的影响。本文研究并讨论了日冕湍流参数和FSO系统参数,如湍流外尺度、谱指数、符号数、数据比特率、等效负载电阻和平均增益,对误码率的影响。此外,还研究了多进制PPM和二进制相移键控子载波强度调制带来的性能提升。数值评估结果表明,采用PPM方案的深空FSO通信系统能够很好地减轻日冕湍流的影响。