激光与光电子学进展, 2010, 47 (4): 040601, 网络出版: 2010-03-20   

卫星激光通信复合轴光跟瞄技术及发展 下载: 683次

Technology and Progress of Compound-Axis Pointing in Satellite Laser Communication
作者单位
中国科学院 上海光学精密机械研究所 中国科学院空间激光通信检验技术国防科技创新实验室, 上海 201800
摘要
卫星激光通信具有巨大的潜在应用价值,国际上已实现高码率、小型化、轻量化和低功耗激光通信终端,其中光学跟瞄系统的设计和控制是关键技术之一。由粗跟踪系统和精跟踪系统组成的复合轴系统能实现光跟瞄系统的大范围、高精度跟踪任务。对卫星激光通信光学跟瞄系统的特点和关键技术进行了讨论,介绍了光跟瞄技术中的扫描、捕获、指向、跟踪过程,综述了复合轴光跟瞄控制系统的国外研究进展。最后对卫星激光通信复合轴光跟瞄系统的应用前景进行了展望。
Abstract
The satellite laser communications are of potential applications and have reached a level of high data rate,compact and light construction,and low-power consumption in the world. One of the most key technologies is the design and control of pointing,acquisition and tracking (PAT) system. The composite axis system,consisting of the coarse tracking system and the fine tracking system can accomplish the wide ranging and high accuracy tracking tasks. The properties and key technologies of PAT are discussed. And the scanning,acquisition,pointing and tracking processes are introduced. International progress of the compound-axis control system of PAT is reviewed. Finally,the application prospect of compound-axis control system is given.
参考文献

[1] S. G. Lambert,W. L. Casey. Laser Communications in Space[M]. Boston,London:Artech House,1995

[2] 马惠军,朱小磊. 自由空间激光通信最新进展[J]. 激光与光电子学进展,2005,42(3):7-10

    Ma Huijun,Zhu Xiaolei. The latest progress of free space laser communications[J]. Laser & Optoelectronics Progress,2005,42(3):7-10

[3] 王玲,冯莹. 卫星相干光通信的研究进展及趋势[J]. 激光与光电子学进展,2007,44(6):49-53

    Wang Ling,Feng Ying. Progress and trend in satellite coherent optical communication[J]. Laser & Optoelectronics Progress,2007,44(6):49-53

[4] 刘立人. 卫星激光通信 I 链路和终端技术[J]. 中国激光,2007,34(1):3-20

    Liu Liren. Laser communications in spaceⅠoptical link and terminal technology[J]. Chinese J. Lasers,2007,34(1):3-20

[5] 刘立人. 卫星激光通信II地面检测和验证技术[J]. 中国激光,2007,34(2):147-155

    Liu Liren. Laser communications in space Ⅱ test and verification techniques on the ground[J]. Chinese J. Lasers,2007,34(2):147-155

[6] E. Perez,M. Bailly,J. M. Pairot. Pointing acquisition and tracking system for Silex inter-satellite optical link [C]. SPIE,1989,1111:277-298

[7] S. Lee,J. Alexander,M. Jeganathan. Pointing and tracking subsystem design for optical communications link between the international space station and ground [C]. SPIE,2000,3932:150-157

[8] 刘锡民,刘立人,郎海涛. 星间光通信中的APT技术及其控制系统[J]. 激光与光电子学进展,2005,42(3):2-6

    Liu Ximin,Liu Liren,Lang Haitao. Study on APT technology and its control system of space laser communication[J]. Laser & Optoelectronics Progress,2005,42(3):2-6

[9] 张秉华. 光电成像跟踪系统[M]. 成都:电子科技大学出版社,2003

    Zhang Binghua. Opto-Electronic Imaging Tracking System[M]. Chengdu:University of Electronic Science and Technology of China Press,2003

[10] G. Oppenhauser,M. Witting. The European SILEX project:concept,performance status and planning [C]. SPIE,1990,1218:27-37

[11] B. Laurent,O. Duchmann. The SILEX project:the first European optical intersatellite link experiment [C]. SPIE,1991,1417:2-12

[12] M. Bailly,E. Perez. The pointing,acquisition and tracking system of SILEX European program:a major technological step for intersatellites optical communication [C]. SPIE,1991,1417:142-157

[13] T. T. Nielsen. Pointing,acquisition and tracking system for the free space laser communication system,SILEX [C]. SPIE,1995,2381:194-205

[14] T. T. Nielsen,G. Oppenhauser. In orbit test result of an operational intersatellite link between ARTEMIS and SPOT4,SILEX [C]. SPIE,2002,4635:1-15

[15] http://www.esa.int/esaCP/SEMN6HQJNVE_index_1.html

[16] http://www.esa.int/esaCP/SEMIJVVLWFE_index_0.html

[17] M. Toyoshima,S. Yamakawa,T. Yanawaki et al.. Ground-to-satellite optical link tests between the Japanese laser communication terminal and the European geostationary satellite ARTEMIS [C]. SPIE,2004,5338:1-15

[18] T. Jono,Y. Takayama,N. Kura et al.. OICETS on-orbit laser communication experiments [C]. SPIE,2006,6105:610503

[19] G. Baister,T. Dreischer,M. Tüchler et al.. OPTEL terminal for deep space telemetry links [C]. SPIE,2007,6457:645706

[20] T. Araki,S. Nakamori,Y. Hisada et al.. Present and future of optical intersatellite communication research at NASDA[C]. SPIE,1994,2123:2-14

[21] T. Dreischer,A. Maerki,T. Weigel et al.. Operating in sub-arc seconds:high precision laser terminal for intersatellite communications [C]. SPIE,2002,4902:87-99

[22] D. Russell,H. Ansari,C. C. Chen. Lasercom pointing acquisition and tracking control using a CCD-based tracker [C]. SPIE,1994,2123:294-303

[23] C. Chen,J. R. Lesh. Overview of the optical communications demonstrator [C]. SPIE,1994,2123:87-95

[24] L. Voisinet. Control processing system architecture for the optical communications demonstrator[C]. SPIE,1994,2123:393-398

[25] M. Jeganathan,A. Portillo,C. Racho et al.. Lessons learnt from the optical communications demonstrator (OCD) [C]. SPIE,1999,3615:23-31

闫爱民, 周煜, 孙建锋, 刘立人. 卫星激光通信复合轴光跟瞄技术及发展[J]. 激光与光电子学进展, 2010, 47(4): 040601. Yan Aimin, Zhou Yu, Sun Jianfeng, Liu Liren. Technology and Progress of Compound-Axis Pointing in Satellite Laser Communication[J]. Laser & Optoelectronics Progress, 2010, 47(4): 040601.

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