中国激光, 2019, 46 (11): 1106001, 网络出版: 2019-11-09   

掺铒光纤放大器作为光学预放的高灵敏度零差相干接收机 下载: 1387次

High-Sensitivity Homodyne Coherent Receiver Using EDFA as Preamplifier
作者单位
1 中国科学院上海光学精密机械研究所中科院空间激光信息传输与探测技术重点实验室, 上海 201800
2 中国科学院大学材料与光电研究中心, 北京 100049
引用该论文

岳朝磊, 孙建锋, 刘磊, 张晓曦, 杨燕, 侯霞, 朱韧, 陈卫标. 掺铒光纤放大器作为光学预放的高灵敏度零差相干接收机[J]. 中国激光, 2019, 46(11): 1106001.

Chaolei Yue, Jianfeng Sun, Lei Liu, Xiaoxi Zhang, Yan Yang, Xia Hou, Ren Zhu, Weibiao Chen. High-Sensitivity Homodyne Coherent Receiver Using EDFA as Preamplifier[J]. Chinese Journal of Lasers, 2019, 46(11): 1106001.

参考文献

[1] Arimoto Y, Toyoshima M, Toyoda M, et al. Preliminary result on laser communication experiment using (ETS-VI)[J]. Proceedings of SPIE, 1995, 2381: 151-158.

[2] Oppenhauser G, Wittig M E. European SILEX project: concept, performance, status, and planning[J]. Proceedings of SPIE, 1990, 1218: 27-37.

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

[4] Smutny B, Lange R, Kämpfner H, et al. In-orbit verification of optical inter-satellite communication links based on homodyne BPSK[J]. Proceedings of SPIE, 2008, 6877: 687702.

[5] Smutny B, Kaempfner H, Muehlnikel G, et al. 5.6 Gbps optical intersatellite communication link[J]. Proceedings of SPIE, 2009, 7199: 719906.

[6] Boroson D M, Robinson B S, Murphy D V, et al. Overview and results of the lunar laser communication demonstration[J]. Proceedings of SPIE, 2014, 8971: 89710S.

[7] Boroson D M, Robinson B S. The lunar laser communication demonstration: NASA's first step toward very high data rate support of science and exploration missions[J]. Space Science Reviews, 2014, 185: 115-128.

[8] Heine F, Pimentel P M, Rochow C, et al. The European data relay system and Alphasat to T-AOGS space to ground links, status, and achievements in 2017[J]. Proceedings of SPIE, 2018, 10524: 105240T.

[9] Kazemi A A. Intersatellite laser communication systems for harsh environment of space[J]. Proceedings of SPIE, 2013, 8720: 872010.

[10] Böhmer K, Gregory M, Heine F, et al. Laser communication terminals for the European data relay system[J]. Proceedings of SPIE, 2012, 8246: 82460D.

[11] Chishiki Y, Yamakawa S, Takano Y, et al. Overview of optical data relay system in JAXA[J]. Proceedings of SPIE, 2016, 9739: 97390D.

[12] Edwards BL, Israel DJ. Update on NASA's laser communications relay demonstration project 2018[C]∥2018 SpaceOps Conference, May 28-June 1, 2018, Marseille, France. USA: AIAA, 2018: 1- 11.

[13] Luzhansky E, Edwards B, Israel D, et al. Overview and status of the laser communication relay demonstration[J]. Proceedings of SPIE, 2016, 9739: 97390C.

[14] 武凤, 于思源, 马仲甜, 等. 星地激光通信链路瞄准角度偏差修正及在轨验证[J]. 中国激光, 2014, 41(6): 0605008.

    Wu F, Yu S Y, Ma Z T, et al. Correction of pointing angle deviation and in-orbit validation in satellite-ground laser communication links[J]. Chinese Journal of Lasers, 2014, 41(6): 0605008.

[15] Chen WB, Sun JF, HouX, et al. 5.12 Gbps optical communication link between LEO satellite and ground station[C]∥2017 IEEE International Conference on Space Optical Systems and Applications(ICSOS), November 14-16, 2017, Naha, Japan. New York: IEEE, 2017: 260- 263.

[16] Koga M, Mizutori A. Decision-directed Costas loop stable homodyne detection for 10-Gb/s BPSK signal transmission[J]. IEEE Photonics Technology Letters, 2014, 26(4): 319-322.

[17] Zhu ZZ, Zhou HJ, Xie WL, et al. 10-Gb/s homodyne receiver based on Costas loop with enhanced dynamic performance[C]∥2017 16th International Conference on Optical Communications and Networks (ICOCN), August 7-10, 2017, Wuzhen, China. New York: IEEE, 2017: 17446085.

[18] 常帅, 佟首峰, 姜会林, 等. 星间高速相干激光通信系统中的光学锁相环技术[J]. 光学学报, 2017, 37(2): 0206004.

    Chang S, Tong S F, Jiang H L, et al. Optical phase-locked loop technology in inter-satellite high-speed coherent laser communication systems[J]. Acta Optica Sinica, 2017, 37(2): 0206004.

[19] Zhou H J, Zhu Z Z, Xie W L, et al. Investigation of signal power splitting ratio for BPSK homodyne receiver with an optical Costas loop[J]. Optical Engineering, 2018, 57(8): 086111.

[20] 刘洋, 佟首峰, 常帅, 等. 相干激光通信系统光学锁相环路载波恢复技术[J]. 光学学报, 2018, 38(1): 0106001.

    Liu Y, Tong S F, Chang S, et al. Carrier recovery technology of optical phase locked loop in coherent laser communication system[J]. Acta Optica Sinica, 2018, 38(1): 0106001.

[21] Kazovsky L G. Decision-driven phase-locked loop for optical homodyne receivers: performance analysis and laser linewidth requirements[J]. Journal of Lightwave Technology, 1985, 3(6): 1238-1247.

[22] Yue C L, Li J W, Sun J F, et al. Homodyne coherent optical receiver for intersatellite communication[J]. Applied Optics, 2018, 57(27): 7915-7923.

[23] Electronic Systems. AES-[J]. Prabhu V K. PSK performance with imperfect carrier phase recovery. IEEE Transactions on Aerospace, 1976, 12(2): 275-286.

[24] Norimatsu S, Iwashita K, Noguchi K. 10 Gbit/s optical PSK homodyne transmission experiments using external cavity DFB LDs[J]. Electronics Letters, 1990, 26(10): 648-649.

[25] Olsson N A. Lightwave systems with optical amplifiers[J]. Journal of Lightwave Technology, 1989, 7(7): 1071-1082.

[26] Yariv A. Signal-to-noise considerations in fiber links with periodic or distributed optical amplification[J]. Optics Letters, 1990, 15(19): 1064-1066.

岳朝磊, 孙建锋, 刘磊, 张晓曦, 杨燕, 侯霞, 朱韧, 陈卫标. 掺铒光纤放大器作为光学预放的高灵敏度零差相干接收机[J]. 中国激光, 2019, 46(11): 1106001. Chaolei Yue, Jianfeng Sun, Lei Liu, Xiaoxi Zhang, Yan Yang, Xia Hou, Ren Zhu, Weibiao Chen. High-Sensitivity Homodyne Coherent Receiver Using EDFA as Preamplifier[J]. Chinese Journal of Lasers, 2019, 46(11): 1106001.

本文已被 4 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!