激光与光电子学进展, 2015, 52 (8): 080002, 网络出版: 2015-07-29   

空间激光通信中光学锁相环的研究进展 下载: 747次

Research Progress of Optical Phase Locked Loop in Space Laser Communication
赵毅 1,2,3,*佟首峰 1,2宋延嵩 1,2常帅 1,2,3刘洋 1,2,3
作者单位
1 长春理工大学空间光电技术研究所, 吉林 长春 130022
2 长春理工大学空地激光通信技术国防重点学科实验室, 吉林 长春 130022
3 长春理工大学光电工程学院, 吉林 长春 130022
摘要
相干探测技术可以有效提高零差接收机的灵敏度.在空间激光通信系统中,零差接收机要求信号光和本振光的相位严格同步,光学锁相环是其中最常用的相位同步技术.介绍了对光学锁相环的理论模型,推导出相应的传递函数,同时指出了影响光学锁相环性能的主要参数,如环路噪声带宽、自然频率和阻尼比等.详述了各类光学锁相环的基本结构和特性,其中包括:平衡锁相环、Costas 锁相环、同步位锁相环、振荡锁相环以及副载波锁相环,并对各类光学锁相环的性能进行了比较.总结了光学锁相环近年来的发展及应用,最后对该技术的前景进行了展望.
Abstract
Coherent detection technology can improve the sensitivity of homodyne receiver effectively.In the system of space laser communication,homodyne receivers make the phases of a local oscillator (LO) signal and a signal wave synchronize,and the optical phase locked loop (OPLL) is the most efficacious technology.Firstly,by including the theoretical model of the optical phase locked loop,the corresponding transfer function is derived.Meanwhile the main parameters affecting the performance of the optical phase-locked loop are discussed,such as the loop noise bandwidth,the natural frequency,the damping factor of the loop.The basic structure and characteristic of each OPLL type are described including:balance OPLL,Costas OPLL,syncbit OPLL,dither OPLL and sub-carrier OPLL,and their properties are compared.Finally,the development and application of OPLLs are summarized,and the prospect of the OPLL technology is prospected.
参考文献

[1] 姜会林,佟首峰,张立中,等.空间激光通信技术与系统[M].北京:国防工业出版社,2010:134-143.

    Jiang Huilin,Tong Shoufeng,Zhang Lizhong,et al..The Technologies and System of Space Laser Communication[M].Beijing:National Defense Industry Press,2010:134-143.

[2] 赵馨,刘云青,佟首峰.动态激光通信系统视轴初始指向建模及验证[J].中国激光,2014,41(5):0505009.

    Zhao Xin,Liu Yunqing,Tong Shoufeng.Line- of- sight initial alignment model and test in dynamic space laser communication[J].Chinese J Lasers,2014,41(5):0505009.

[3] 赵鑫,宋延嵩,佟首峰,等.空间激光通信捕获、对准、跟踪系统动态演示实验[J].中国激光,2014,41(3):0305005.

    Zhao Xin,Song Yansong,Tong Shoufeng,et al..Dynamic demonstration experiment of acquisition,pointing and tracking system in space laser communications[J].Chinese J Lasers,2014,41(3):0305005.

[4] L G Kazovsky,D A Atlas.A 1320- nm experimental optical phase- locked loop:Performance investigation and PSK homodyne experiments at 140 Mb/s and 2 Gb/s[J].J Lightwave Technol,1990,8(9):1414-1425.

[5] R Lange,B Smutny.Optical inter-satellite links based on homodyne BPSK modulation:Heritage,status and outlook[C].SPIE,2005,5712:1-12.

[6] Daniel Abramovitch.Phase-locked loops:A control centric tutorial[C].American Control Conference,Palo Atlo:IEEE,2002:1-15.

[7] L G Kazovsky.Balanced phase-locked loops for optical homodyne receivers:Performance analysis,design considerations,and laser linewidth requirements[J].J Lightwave Technol,1986,4(2):182-195.

[8] C Rapp.Modulated residual carrier method with envelope processing:A novel phase synchronisation method for optical homodyne transmission[J].Journal of the Communications Research Laboratory,2000,46(3):321-323.

[9] T Q Hodgkinson.Costas loop analysis for coherent optical receivers[J].Electron Lett,1986,22(7):394-396.

[10] W R Leed.Optical 90° hybrid for costas-type receivers[J].Electron Lett,1990,26(18):1431-1432.

[11] 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.

    Zheng Yang,Jiang Huilin,Tong Shoufeng,et al..Establishment of space light mixer mathematical model based on the space coherent laser communication[J].Acta Optica Sinica,2013,33(7):0706024.

[12] 郑阳,姜会林,佟首峰,等.基于相干激光通信的空间光混频器光机结构设计[J].光学学报,2013,33(9):0906008.

    Zheng Yang,Jiang Huilin,Tong Shoufeng,et al..Opto- mechanical structure design of the space optical hybrid based on space coherent laser communication[J].Acta Optica Sinica,2013,33(9):0906008.

[13] W Glatt,M A Schreiblehner,C Haider.Optical PSK homodyne system using a switched residual carrier for phase synchronisation[J].Electron Lett,1996,32(15):1386-1387.

[14] K Kudielka,W Klaus.Optical homodyne PSK receiver:Phase synchronization by maximizing baseband signal power[C].IEEE Lasers and Electro-Optics Society 1999 12th Annual Meeting,San Francisco:IEEE,1999:295-296.

[15] F Herzog,K Kudielka,D Erni,et al..Optical phase locked loop for transparent inter- satellite communications[J].Opt Express,2005,13(10):3816-3822.

[16] S Camatel,V Ferrero,R Gaudino,et al..Optical phase-locked loop for coherent detection optical receiver[J].Electron Lett,2004,40(6):384-385.

[17] Enric Torrengo,Valter Ferrero,Stefano Camatel.A 20-Gb/s quadrature phase-shift-keying real-time coherent system based on a subcarrier optical phase-locked loop[J].IEEE Photon Technol Lett,2009,21(18):1296-1298.

[18] S Camatel,V Ferrero.2.5-Gb/s BPSK ultradense WDM homodyne coherent detection using a subcarrier-based optical phase-locked loop[J].IEEE Photon Technol Lett,2006,18(18):1919-1921.

[19] S Camatel,V Ferrero.Phase noise power spectral density measurement of narrow linewidth CW lasers using an optical phase-locked loop[J].IEEE Photon Technol Lett,2006,18(23):2529-2531.

[20] S Camatel,V Ferrero,P Poggiolini.2- PSK homodyne receiver based on a decision driven architecture and a subcarrier optical PLL[C].Optical Fiber Communication Conference,Anaheim:OSA,2006:OTul3.

[21] S Camatel,V Ferrero.Optical phase locking techniques:An overview and a novel method based on single side subcarrier modulation[J].Opt Express,2008,16(2):818-828.

[22] Yixin Wang,Keisuke Kasai,Tatsunori Omiya,et al..120 Gbit/s,polarization- multiplexed 10 Gsymbol/s,64 QAM coherent transmission over 150 km using an optical voltage controlled oscillator [J].Opt Express,2013,21(23):28290-28296.

[23] Ya′ nan Zhi,Jianfeng Sun,Enwen Dai,et al..High data- rate differential phase shift keying receiver for satellite- toground optical communication link[C].SPIE,2012,8517:85170F.

[24] 马小平,孙建锋,侯培培,等.星地激光通信中克服大气湍流效应研究进展[J].激光与光电子学进展,2014,51(12):120002.

    Ma Xiaoping,Sun Jianfeng,Hou Peipei,et al..Research progress on overcoming the atmosperic turbulence effect in satellite-to-ground laser communication[J].Laser & Optoelectronics Progress,2014,51(12):120002.

[25] B Smutny,H Kaempfner,G Muehlnikel,et al..5.6 Gbps optical inter-satellite communication link[C].SPIE,2009,7199:719906.

[26] Mark Gregory,Frank Heine,Hartmut K mpfner,et al..Coherent inter- satellite and satellite- ground laser links[C].SPIE,2011,7923:792303.

[27] Ma Xiaoping,Sun Jianfeng,Zhi Ya′nan,et al..Technological research of differential phase shift keying receiver in the satellite-to-ground laser communication[C].SPIE,2012,8517:851714.

[28] Yoshisada Takayama,Morio Toyoshima,Yoshisada Koyama.Current development status of small optical transponder (SOTA) for satellite-ground laser communications[C].SPIE,2012,8246:824607.

[29] Xiaoli Sun,David R Skillmana,E D Hoffman,et al..Simultaneous laser ranging and communication from an earthbased satellite laser ranging station to the lunar reconnaissance orbiter in lunar orbit[C].SPIE,2013,8610:861003.

[30] M B Taylora,P A MacKoula,R T Schulein.Nonlinearity mitigation of a 40- watt 1.55- micron uplink transmitter for lunar laser communications[C].SPIE,2013,8610:86100F.

赵毅, 佟首峰, 宋延嵩, 常帅, 刘洋. 空间激光通信中光学锁相环的研究进展[J]. 激光与光电子学进展, 2015, 52(8): 080002. Zhao Yi, Tong Shoufeng, Song Yansong, Chang shuai, Liu Yang. Research Progress of Optical Phase Locked Loop in Space Laser Communication[J]. Laser & Optoelectronics Progress, 2015, 52(8): 080002.

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