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1.北京航空航天大学 电子信息工程学院,北京 100191
2.北京遥测技术研究所,北京 100094
Received:05 January 2022,
Revised:16 February 2022,
Published:10 July 2022
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李晓亮,刘荣科,王建军等.基于单光子探测器的深空激光通信阵列[J].光学精密工程,2022,30(13):1534-1541.
LI Xiaoliang,LIU Rongke,WANG Jianjun,et al.Deep-space laser communications telescope array based on single photon detector[J].Optics and Precision Engineering,2022,30(13):1534-1541.
李晓亮,刘荣科,王建军等.基于单光子探测器的深空激光通信阵列[J].光学精密工程,2022,30(13):1534-1541. DOI: 10.37188/OPE.20223013.1534.
LI Xiaoliang,LIU Rongke,WANG Jianjun,et al.Deep-space laser communications telescope array based on single photon detector[J].Optics and Precision Engineering,2022,30(13):1534-1541. DOI: 10.37188/OPE.20223013.1534.
随着深空探测中飞行器载荷探测器种类和数据容量的增大以及探测领域的拓展,对地通信速率和通信距离要求越来越高。与无线电通信相比,激光通信具有通信速率高、波束窄、保密性好、终端质量轻和功耗低等优势,在深空通信中具有巨大的潜力。为了实现远距离高灵敏度通信,通常采用提高飞行器终端激光峰值发射功率、增大地面光学系统接收面积、提高探测器接收灵敏度等方式。通过分析达到探测器靶面的光子数,采用PPM调制与超导纳米线单光子探测器是深空激光通信较为理想的一种方案。从探测器的探测概率和虚警概率出发,推导出了系统误码率模型。采用多台望远镜通过信号层面上“或”和“与”的组合处理方式组成有效口径10 m的接收望远镜阵,并分析了几种不同级联方式下的通信误码率。分析结果表明,由16台2.5 m口径望远镜通过特定的组合方式,在白天强背景光、通信距离2.67AU、通信速率1 Mb/s下,通信误码率优于10
-7
。
With the increase of different types of space borne detectors and data capacity, as well as the expansion of the exploration field, requirements in the deep space exploration of ground communication rate and communication distance are also increasing. Compared with radio communication, space laser communication has several advantages, such as high data rate, narrow laser beam, higher security, terminal light-weight, and low power-consumption. Thus, it has great potential in deep space communication. However, space laser communication faces great challenges in the case of long distances. Generally, long-distance, high-sensitivity communication is performed by increasing the peak power of the transmit laser in the aircraft terminal, which increases the receiving area of the ground optical system, thereby improving the receiving sensitivity of the detector. By analyzing the number of photons reaching the surface of the detector, the PPM modulation system and superconducting nanowire single photon detector (SNSPD) is found to be significantly better for deep space laser communication. More specifically, the bit error rate (BER) of the system is derived from the detection probability and false probability of SNSPD. A receiving telescope array with an effective aperture of 10 m is composed of several telescopes through the combination of ‘or’ and ‘and’ signals. Subsequently, the BER of several different cascading modes is analyzed, and the results reveal that the BER with sixteen 2.5 m-aperture telescopes is relatively better than 10
-7
under strong background conditions, a communication distance of 2.67 AU, and a communication rate of 1 Mb/s.
徐科华 , 马晶 , 谭立英 . 深空光通信中光束瞄准技术研究 [J]. 光学 精密工程 , 2006 , 14 ( 1 ): 16 - 21 . doi: 10.3321/j.issn:1004-924X.2006.01.004 http://dx.doi.org/10.3321/j.issn:1004-924X.2006.01.004
XU K H , MA J , TAN L Y . Research on beam pointing in deep space optical communication [J]. Opt. Precision Eng. , 2006 , 14 ( 1 ): 16 - 21 . (in Chinese) . doi: 10.3321/j.issn:1004-924X.2006.01.004 http://dx.doi.org/10.3321/j.issn:1004-924X.2006.01.004
李海涛 . 中国深空测控网光通信技术途径分析与发展展望(特约) [J]. 红外与激光工程 , 2020 , 49 ( 5 ): 3788 /IRLA20201003. doi: 10.3788/irla.3_invited-lihaitao http://dx.doi.org/10.3788/irla.3_invited-lihaitao
LI H T . Technical approach analysis and development prospects of optical communication technology in China Deep Space TT & C Network(Invited) [J]. Infrared and Laser Engineering , 2020 , 49 ( 5 ): 3788 /IRLA20201003. (in Chinese) . doi: 10.3788/irla.3_invited-lihaitao http://dx.doi.org/10.3788/irla.3_invited-lihaitao
杨海峰 , 柴霖 , 卢欧欣 , 等 . 月地及月地以远测控通信与若干关键技术发展趋势 [J]. 飞行器测控学报 , 2017 , 36 ( 2 ): 144 - 156 . doi: 10.7642/j.issn.1674-5620.2017-02-0144-13 http://dx.doi.org/10.7642/j.issn.1674-5620.2017-02-0144-13
YANG H F , CHAI L , LU O X , et al . Development of key technologies of lunar and deep space TT & C systems [J]. Journal of Spacecraft TT&C Technology , 2017 , 36 ( 2 ): 144 - 156 . (in Chinese) . doi: 10.7642/j.issn.1674-5620.2017-02-0144-13 http://dx.doi.org/10.7642/j.issn.1674-5620.2017-02-0144-13
郭超勇 , 刘继奎 , 程俊波 , 等 . 卫星激光通信粗跟踪系统复合控制策略 [J]. 光学 精密工程 , 2020 , 28 ( 4 ): 946 - 953 .
GUO CH Y , LIU J K , CHENG J B , et al . Compound control strategy of satellite laser communication coarse tracking system [J]. Opt. Precision Eng. , 2020 , 28 ( 4 ): 946 - 953 . (in Chinese)
李凉海 , 刘向南 , 李晓亮 . 深空激光通信进展及应用研究 [J]. 深空探测学报 , 2019 , 6 ( 6 ): 523 - 529 .
LI L H , LIU X N , LI X L . Progress and application research of deep space laser communication [J]. Journal of Deep Space Exploration , 2019 , 6 ( 6 ): 523 - 529 . (in Chinese)
丁少行 . 星载激光通信端机指向误差分析及振动特性研究 [D]. 长春 : 中国科学院长春光学精密机械与物理研究所 , 2020 .
DING SH X . Pointing Error Analysis and Vibration Characteristic Research of Laser Communication Terminal on Satellite [D]. Changchun : Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences , 2020 . (in Chinese)
王天枢 , 林鹏 , 董芳 , 等 . 空间激光通信技术发展现状及展望 [J]. 中国工程科学 , 2020 , 22 ( 3 ): 92 - 99 . doi: 10.15302/J-SSCAE-2020.03.014 http://dx.doi.org/10.15302/J-SSCAE-2020.03.014
WANG T SH , LIN P , DONG F , et al . Progress and prospect of space laser communication technology [J]. Strategic Study of CAE , 2020 , 22 ( 3 ): 92 - 99 . (in Chinese) . doi: 10.15302/J-SSCAE-2020.03.014 http://dx.doi.org/10.15302/J-SSCAE-2020.03.014
VILNROTTER V A , SRINIVASAN M . Adaptive detector arrays for optical communications receivers [J]. IEEE Transactions on Communications , 2002 , 50 ( 7 ): 1091 - 1097 . doi: 10.1109/tcomm.2002.800813 http://dx.doi.org/10.1109/tcomm.2002.800813
CANDELL L M . LDES: a prototype array optical receiver for the Mars laser communications demonstration program [J]. Digest of the LEOS Summer Topical Meetings , 2005 , 2005 : 13 - 14 .
刘登宽 , 陈思井 , 尤立星 , 等 . 超导纳米线单光子探测器的光耦合结构 [J]. 光学 精密工程 , 2013 , 21 ( 6 ): 1496 - 1502 . doi: 10.3788/ope.20132106.1496 http://dx.doi.org/10.3788/ope.20132106.1496
LIU D K , CHEN S J , YOU L X , et al . Fiber coupling of superconducting nanowire single-photon detectors [J]. Opt. Precision Eng. , 2013 , 21 ( 6 ): 1496 - 1502 . (in Chinese) . doi: 10.3788/ope.20132106.1496 http://dx.doi.org/10.3788/ope.20132106.1496
STEPHEN G L , WILLIAML C . Laser Communications in Space [M]. Artech House , 1995 : 96 - 105 .
马晶 , 徐科华 , 谭立英 , 等 . 美国火星激光通信系统分析 [J]. 空间科学学报 , 2006 , 26 ( 5 ): 364 - 369 . doi: 10.11728/cjss2006.05.364 http://dx.doi.org/10.11728/cjss2006.05.364
MA J , XU K H , TAN L Y , et al . Analysis for Mars laser communications system in USA [J]. Chinese Journal of Space Science , 2006 , 26 ( 5 ): 364 - 369 . (in Chinese) . doi: 10.11728/cjss2006.05.364 http://dx.doi.org/10.11728/cjss2006.05.364
MOISION B , HAMKINS J . Deep-space optical communications downlink budget: Modulation and coding [R]. PL IPN Prog. Rep . 42 - 154 ,Aug. 15 ,2003:pp1-28.
任旻 . 高速单光子探测及应用研究 [D]. 上海 : 华东师范大学 , 2013 .
REN M . Study on High-speed Single-photon Detection and Applications [D]. Shanghai : East China Normal University , 2013 . (in Chinese)
顾敏 . 高效率大面积超导纳米线单光子探测器研究 [D]. 南京 : 南京大学 , 2015 . doi: 10.1088/1674-1056/24/6/068501 http://dx.doi.org/10.1088/1674-1056/24/6/068501
GU M . Studies on Superconducting Nanowire Single-photon Detectors with High Efficiency and Large Active Area [D]. Nanjing : Nanjing University , 2015 . (in Chinese) . doi: 10.1088/1674-1056/24/6/068501 http://dx.doi.org/10.1088/1674-1056/24/6/068501
闫夏超 , 朱江 , 张蜡宝 , 等 . 基于超导纳米线单光子探测器深空激光通信模型及误码率研究 [J]. 物理学报 , 2017 , 66 ( 19 ): 198501 . doi: 10.7498/aps.66.198501 http://dx.doi.org/10.7498/aps.66.198501
YAN X CH , ZHU J , ZHANG L B , et al . Model of bit error rate for laser communication based on superconducting nanowire single photon detector [J]. Acta Physica Sinica , 2017 , 66 ( 19 ): 198501 . (in Chinese) . doi: 10.7498/aps.66.198501 http://dx.doi.org/10.7498/aps.66.198501
张蜡宝 , 康琳 , 陈健 , 等 . 超导纳米线单光子探测器研究新进展 [J]. 南京大学学报(自然科学) , 2014 , 50 ( 3 ): 254 - 261 . doi: 10.1109/ursigass.2014.6929468 http://dx.doi.org/10.1109/ursigass.2014.6929468
ZHANG L B , KANG L , CHEN J , et al . Development of superconductor nanowire single photon detector [J]. Journal of Nanjing University (Natural Sciences) , 2014 , 50 ( 3 ): 254 - 261 . (in Chinese) . doi: 10.1109/ursigass.2014.6929468 http://dx.doi.org/10.1109/ursigass.2014.6929468
尤立星 , 申小芳 , 杨晓燕 . 超导纳米线单光子探测器件的单光子响应 [J]. 科学通报 , 2009 , 54 ( 16 ): 2416 - 2420 . doi: 10.1360/csb2009-54-16-2416 http://dx.doi.org/10.1360/csb2009-54-16-2416
YOU L X , SHEN X F , YANG X Y . Single photon response of superconducting nanowire single photon detector [J]. Chinese Science Bulletin , 2009 , 54 ( 16 ): 2416 - 2420 . (in Chinese) . doi: 10.1360/csb2009-54-16-2416 http://dx.doi.org/10.1360/csb2009-54-16-2416
傅兴隆 . 深空光通信PPM调制系统设计与研究 [D]. 长春 : 长春理工大学 , 2012 .
FU X L . The Design and Research of Deep-space Optical Communication PPM Modulation System [D]. Changchun : Changchun University of Science and Technology , 2012 . (in Chinese)
王建军 . 白天强天空背景条件下空间目标探测能力分析 [J]. 飞行器测控学报 , 2007 , 26 ( 6 ): 45 - 49 .
WANG J J . An analysis of detection capability to space object in daytime strong sky background [J]. Journal of Spacecraft Tt & C Technology , 2007 , 26 ( 6 ): 45 - 49 . (in Chinese)
张己化 , 姚东升 , 谈斌 . 地基光电系统空间目标探测影响因素分析 [J]. 光学学报 , 2008 , 28 ( 6 ): 1178 - 1182 . doi: 10.3788/aos20082806.1178 http://dx.doi.org/10.3788/aos20082806.1178
ZHANG J H , YAO D SH , TAN B . Analysis on effect factors of ground-based electro-optic system detection ability on space object [J]. Acta Optica Sinica , 2008 , 28 ( 6 ): 1178 - 1182 . (in Chinese) . doi: 10.3788/aos20082806.1178 http://dx.doi.org/10.3788/aos20082806.1178
BOROSON D M , BISWAS A , EDWARDS B L . MLCD: overview of NASA's Mars laser communications demonstration system [C]. Free-Space Laser Communication Technologies XVI , " SPIE Proceedings . San Jose , Ca. SPIE , 2004 , 5338 : 16 - 28 . doi: 10.1117/12.543014 http://dx.doi.org/10.1117/12.543014
VILNROTTER V A , LAU C W , SRINIVASAN M , et al . Optical array receiver for deep-space communications [C]. Free-Space Laser Communication Technologies XVI , SPIE Proceedings . San Jose , Ca. SPIE , 2004 , 5338 : 163 - 147 . doi: 10.1117/12.529628 http://dx.doi.org/10.1117/12.529628
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