Li Mi, Guo You, Wang Xue, Fu Wanwang, Zhang Yuexing, Wang Yisi
Opt Express. 2022 Feb 14;30(4):5769-5787. doi: 10.1364/OE.447408.
In order to evaluate the pointing error effect on laser linewidth tolerance in a space coherent optical communication system, we derive a closed-form bit error rate (BER) model for binary phase-shift-keying (BPSK) modulation and heterodyne detection, under atmospheric turbulence, pointing error and laser phase noise. Based on the BER model, the linewidth tolerance is given, and numerical simulation is conducted. We find that laser linewidth tolerance decreases greatly with the increase of pointing error. Considering that pointing error consists of jitter and boresight, the effect of jitter and boresight are discussed separately and jointly in detail. Our results show that laser linewidth tolerance is more sensitive to the jitter variation than the boresight variation. In addition, with the increasing of the pointing error, the linewidth tolerance decreases faster under the large pointing error as compared to the case under the small pointing error. This paper is a good reference for designing space coherent optical communication systems.
为了评估空间相干光通信系统中指向误差对激光线宽容限的影响,我们推导了在大气湍流、指向误差和激光相位噪声条件下,用于二进制相移键控(BPSK)调制和外差检测的闭式误码率(BER)模型。基于该误码率模型,给出了线宽容限,并进行了数值模拟。我们发现,激光线宽容限随着指向误差的增加而大幅降低。考虑到指向误差由抖动和视轴误差组成,分别详细讨论了抖动和视轴误差的影响以及它们的联合影响。我们的结果表明,激光线宽容限对抖动变化比对视轴误差变化更敏感。此外,随着指向误差的增加,与小指向误差情况相比,大指向误差情况下线宽容限下降得更快。本文为设计空间相干光通信系统提供了很好的参考。