期刊文献+

近海岸水下激光信号传输实验研究 被引量:1

Experimental Study on Underwater Laser Signal Transmission Offshore
原文传递
导出
摘要 建立了绿光水下激光传输的发射和接收实验系统,在威海近岸海域对调制激光信号在水下的传输特性进行了实验研究。系统以光电倍增管作为探测器,在不同接收负载情况下,观测了不同传输距离下绿光脉冲信号的接收波形。实验结果表明,大的接收负载有助于提高探测距离,采用1MΩ接收负载时的最大探测距离为26m-1。根据实验数据拟合不同距离处的接收光强,激光在海水中的传输信号强度呈e指数衰减趋势,其衰减系数为0.5m,可以推断在浑浊度较小的海域光传输距离会增加。 A system including underwater green light laser transmitter and receiver is designed. The optical transmission experiment is made in coastal waters of Weihai and a photomultiplier tube is used as a detector. Different waveforms and signal strengths under different distances are measured by using different receiving loads. The results show that a bigger load will get an increased distance. The effective transmission distance is 26 m when the load is 1 MΩ. Data is fitted under different distances, and it is found that the attenuation in coastal waters appears e exponential decay, the coefficiency is 0.5 m- 1. It can be deduced that the system will get a better performance in sea with smaller attenuation.
出处 《中国激光》 EI CAS CSCD 北大核心 2013年第B12期229-232,共4页 Chinese Journal of Lasers
关键词 海洋光学 光通信 绿光 水下 oceanic optics optical communication green light underwater
  • 相关文献

参考文献12

  • 1S Karp, T Wiener. The role of blue/green laser systems in strategic submarine communications[J]. Communications, IEEE Transactions, 1980, 28(9): 1602-1607.
  • 2M Wang, W H Liu. Study on optical characteristics oI seawater in blue green laser uplink propagation model[J]. Journal of East China Shipbuilding Institute, 2005, 19(1): 59-62.
  • 3I Vasilescu, K Kotay, D Rus, et al. Data collection, storage, and retrieval with an underwater sensor network[C]. Proc IEEE SenSys, 2005. 154-165.
  • 4M Tivey, P Fucile, E Sichl. A low power, low cost, underwater optical communication system[J]. Ridge 2000 Events, 2004, 2 (1): 27-29.
  • 5F Hanson, S Radic. High bandwidth underwater optical communication[J]. ApptOpt, 2008, 47(2): 277-283.
  • 6Y F Fung, M Dai, M F Ercan. Underwater short range free space optical communication for a robotic swarm [ C ]. Autonomous Robots and Agents 4th International Conference, 2009. 529-532.
  • 7H Yoshida, T Hyakudome, S Ishibashi, et al. Study on land-to underwater communication [C]. Wireless Personal Multimedia communication (WPMC), 2011 14th International symposium, 2011. 1-5.
  • 8杜竹峰,黄铁侠,卢益民.激光对潜通信的通信能力计算[J].华中理工大学学报,1997,25(8):63-65. 被引量:2
  • 9刘西锋,于新生.水下光学无线通信系统的设计与仿真[C].第十二届全国青年通信学术会议,2007.1424-1430.
  • 10孙丽华,陈名松,李天松,易淼.LDPC码在水下激光通信中的研究[J].激光技术,2009,33(6):604-606. 被引量:2

二级参考文献18

  • 1阚倩,荣健,钟晓春.激光水下通信TURBO码应用研究[J].激光与光电子学进展,2005,42(11):51-53. 被引量:3
  • 2司立宏,敖发良,何宁.激光在海水界面上的传输特性分析[J].桂林电子科技大学学报,2006,26(6):430-433. 被引量:5
  • 3LONGUET-HIGGINS M S, CARTWRIGHT D W, SMITH N D. Observation of the Directional Spectrum of Sea Waves Using the Motion of a Floating Body[C]//Proc. Conference on Ocean Wave Spectra. Prentice-Hall, 1961: 111-132.
  • 4桂林电子科技大学.无线激光扫描通信方法[P].中国:200610022738.2007-07-18.http://www.cnki.net.
  • 5SHERMAN K. Optical Communications Between Underwater and Above Surface (Satellite) Terminals[J]. IEEE TRANSACTIONS ON COMMUNICATIONS, 1976, 24(1): 66-81.
  • 6WANG M, LIU W H. Study on optical characteristics of seawater in blue-green laser uplink propagation model [ J]. Journal of East China Shipbuilding Institute,2005,19 ( 1 ) :59-62 ( in Chinese).
  • 7MACKAY D J C. Good error-correcting codes based on very sparse matrices [J]. IEEE Transactions on Information Theory, 1999,45 (2) :399-431.
  • 8YANG K T, WANG X B. Blue-green lidar dcean survey [ M ]. Beijing: National Defense Industry Press, 2002:41 -48 ( in Chinese).
  • 9RICHARDSON T J, URBANKE R L. Efficient encoding of low-density parity-check codes [ J]. IEEE Transaction on Information Theory, 2001,47(2) :6384556.
  • 10WEN H, FU Ch Sh, ZHOU L. The application and principle of LDPC code [ M]. Chengdu : University of Electronic Science and Technology of China Press,2006:48-63 ( in Chinese).

共引文献2

同被引文献17

引证文献1

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部