光子学报, 2015, 44 (8): 0806003, 网络出版: 2015-09-08   

大气湍流下带有跟踪误差的空间相干光通信性能分析

Performance Analysis of Free Space Coherent Optical Communication in Atmosphere Turbulence with Tracking Error
南航 1,2,*张鹏 1,2佟首峰 1,2陈纯毅 1,3
作者单位
1 长春理工大学 光电工程学院, 长春 130022
2 长春理工大学 空间光电技术国家与地方联合工程中心, 长春 130022
3 长春理工大学 光电测控与光信息传输技术教育部重点实验室, 长春 130022
摘要
在星地链路的空间相干光通信系统中,大气湍流、跟踪误差会影响系统的混频效率和误码率.根据混频效率公式分别推导了大气湍流强度和跟踪误差与系统混频效率的关系并进行仿真计算.计算结果表明,混频效率随跟踪误差和大气湍流强度的增加而降低,其中当跟踪误差大于12 μrad或湍流强度超过10-16时,混频效率趋近零.建立了大气湍流下带跟踪误差的光混频效率及误码率的数学模型,并计算了不同情况下的混频效率.在跟踪误差小于2 μrad时大气湍流是混频效率的主要影响因素,当跟踪误差继续增大时跟踪误差起主导作用.根据传统相干光通信系统参量取值估算得最大混频效率约为67.8%,当误码率为10-9时系统接收灵敏度为17 photon/bit.
Abstract
In the free space coherent optical communication system of satellite-ground link,atmosphere turbulence and tracking error will affect the mixing efficiency and the bit error rate.According to the mixing efficiency formula,both the relationship between system mixing efficiency and atmosphere turbulence intensity and the relationship between system mixing efficiency and tracking error were derived and simulatied.The results show that the mixing efficiency will decrease with the increasing of tracking error and atmosphere turbulence intensity.When the tracking error is greater than 12 μrad or turbulence intensity exceeds 10-16,the mixing efficiency is close to 0.An optical mixing efficiency model and a bit error rate model were built in atmosphere turbulence with tracking error,and the homodyne efficiency with different conditions was calculated.Atmosphere is the significant factor of mixing efficiency when tracking error is less than 2 μrad.Then,the tracking error will be as the leading factor with it increasing.According to the reference values of traditional coherent communication system,the maximum of mixing efficiency is about 67.8%,and the system receiving sensitivity is 17 photon/bit when the error rate is 10-9.
参考文献

[1] 郑阳,姜会林,佟首峰,等.基于相干激光通信空间光混频器数学模型的建立[J].光学学报,2013,33(7):0706024.

    ZHANG Yang,JIANG Hui-lin,TONG Shou-feng,et al.Establishment of space light mixer mathematical model based on the space coherent laser communication[J].Acta Optica Sinica,2013,33(7):0706024.

[2] 刘宏展,纪越峰,许楠,等.信号与本振光振幅分布对星间相干光通信系统混频效率的影响[J].光学学报,2011,31(10):1006001.

    LIU Hong-zhan,JI Yue-feng,XU Nan,et al.Effect of amplitude profile difference of signal and local oscillator wave on heterodyne efficiency in the inter-satellite coherent optical communication system[J].Acta Optica Sinica,2011,31(10):1006001.

[3] 幺周石,邓科,李晓峰.卫星相干光通信跟瞄误差对链路性能的影响[J].光电子·激光,2010,21(6):868-870.

    YAO Zhou-shi,DENG Ke,LI Xiao-feng.The effect of pointing error on performance of satellite coherent laser communication link[J].Journal of Optoelectronics,2010,21(6):868-870.

[4] 向劲松,潘乐春.空间相干光通信外差效率及天线像差的影响[J].光电工程,2009,36(11):53-57.

    XIANG Jing-song,PAN Le-chun.Heterodyne efficiency and the effects of aberration for space coherent optical communication[J].Opto-Electronic Engineering,2009,36(11):53-57.

[5] LIU Chao,CHEN Shan-qiu,LI Xin-yang,et al.Performance evaluation of adaptive optics for atmospheric coherent laser communications[J].Optics Express,2014,22(13):15554-15563.

[6] SHLOMI A,STANLEY R,NORMAN S,et al.Performance limitations of a free-space optical communication satellite network owing to vibrations:heterodyne detection[J].Applied Optics,1998,37(27):6366-6374.

[7] 王朝晖,赵长政,陈文新,等.振动对星间相干激光通信的影响[J].应用光学,2007,28(3):336-339.

    WANG Zhao-hui,ZHAO Chang-zheng,CHEN Wen-xin,et al.Effect of vibration on intersatellite coherent laser communication[J].Journal of Applied Optics,2007,28(3):336-339.

[8] KAZUMASA T,NAOYUKI O.Effects of tilt and offset of signal field on heterodyne efficiency[J].Applied Optics,1987,26(4):627-632.

[9] KAZUMASA T,NOBUHIRO S.Maximum heterodyne efficiency of optical heterodyne detection in the presence of background radiation[J].Applied Optics,1984,23(21):3901-3904.

[10] DAVID F.Coherent detection signal-to-noise[J].Applied Optics,1975,14(3):689-690.

[11] ZHANG Peng,QIN Kai-yu,HUANG Jian,et al.Influences of hybrid phase-shift error on the performance of optical coherent receivers[J].Optics Communications,2015,01(044):113-119.

[12] TAKASHI T,KAZUMASA T,OTOZO F.Signal-to-noise ratio in optical heterodyne detection for Gaussian fields[J].Applied Optics,1978,17(21):3466-3471.

[13] 王建民,秦谊,徐泉,等.卫星激光通信端机跟瞄准确度测试技术研究[J].光电子·激光,2008,19(8):1054-1059.

    WANG Jian-min,QIN Yi,XU Quan,et al.Study on the measurement of tracking and pointing accuracy used for the terminals of free space laser communication[J].Journal of Optoeletronics Laser,2008,19(8):1054-1059.

[14] 曹阳,艾勇,黎明,等.空间光通信精跟踪系统地面模拟实验[J].光电子·激光,2009,20(1):40-43.

    CAO Yang,AI Yong,LI Ming,et al.Ground simulation experiment of fine tracking for spatial optical communication[J].Journal of Optoelectronics Laser,2009,20(1):40-43.

[15] ROBERT L,BERRY S.Homodyne BPSK-based optical inter-satellite communication links[C].SPIE,2007,6457:645703.

[16] ROBERT L,BERRY S.Optical inter-satellite links based on homodyne BPSK modulation:heritage,status and outlook[C].SPIE,2005,5712:1-12.

[17] REN Yong-xiong,DANG An-hong,LIU Ling,et al.Heterodyne efficiency of a coherent free-space optical communication model through atmospheric turbulence[J].Applied Optics,2012,51(30):7246-7254.

[18] 佟首峰,姜会林,张立中.高速率空间激光通信系统及其应用[J].红外与激光工程,2010,39(4):649-654.

    TONG Shou-feng,JIANG Hui-lin,ZHANG Li-zhong.High date-rate space laser communication system and its application[J].Infrared and Laser Engineering,2010,39(4):649-654.

[19] 韩成,白宝兴,杨华民,等.空地激光通信跟踪准确度主要外界影响因素研究[J].光子学报,2010,39(1):89-94.

    HAN Cheng,BAI Bao-xing,YANG Hua-min,et al.Primary environment influence factors to tracking precision in space-ground laser communication[J].Acta Photonica Sinica,2010,39(1):89-94.

[20] 黄印博,魏合理,梅海平,等.大气信道对红外激光通信系统性能影响的实验研究[J].光子学报,2009,38(3):646-651.

    HUANG Yin-bo,WEI He-li,MEI Hai-ping,et al.Effects of atmospheric channel on system performance of infrared laser communication system[J].Acta Photonica Sinica,2009,38(3):646-651.

[21] 于林韬,宋路,韩成,等.空地激光通信链路功率与通信性能分析与仿真[J].光子学报,2013,42(5):543-547.

    YU Lin-tao,SONG Lu,HAN Chen,et al.Analysis and simulation of link power and communication performance in space-gound optical communication[J].Acta Photonica Sinica,2013,42(5):543-547.

南航, 张鹏, 佟首峰, 陈纯毅. 大气湍流下带有跟踪误差的空间相干光通信性能分析[J]. 光子学报, 2015, 44(8): 0806003. NAN Hang, ZHANG Peng, TONG Shou-feng, CHEN Chun-yi. Performance Analysis of Free Space Coherent Optical Communication in Atmosphere Turbulence with Tracking Error[J]. ACTA PHOTONICA SINICA, 2015, 44(8): 0806003.

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