期刊文献+

微型飞行器机载摄像与无线传输系统的研究 被引量:2

Study on video communication system for Micro Air Vehicle
下载PDF
导出
摘要 介绍了微型飞行器机载摄像与无线传输系统的原理和性能指标。该系统机载部分基本实现了微型化,机载部分总重量仅8.5g,典型功耗0.78W,传输范围为500~1000m,可实时传输视频信号,并成功实现了微型飞行器THF380的搭载试验。 This paper introduces a video communication system used in the Micro Air Vehicle(MAV)which was researched.The part in MAV of system is miniature.Its weight is8.5g,and the po-wer consume is0.78W.The communication range of system is500to1000meter.The system can transmit real-time video.It succeeded to be used in the MAV THF380.[
出处 《电视技术》 北大核心 2002年第6期93-94,102,共3页 Video Engineering
关键词 微型飞行器 机载摄像 无线传输系统 MAV camera wireless communication
  • 相关文献

参考文献2

二级参考文献6

  • 1[1] Steven A.Palm-size Spy Planes[J].Mechanical Engineering,1998,120(2):74~78.
  • 2[2] Bruce D.Micro Air Vehicles Hold Great Promise,Challenges[J].Aviation Week and Space Technology,1997,14,146:67~68.
  • 3[3] Jack H.Military Look to Flying Insect Robots[J].Industrial Robot,1998,25(2):124~128.
  • 4[4] Masoud R-R,George R H.Multidisciplinary Design and Prototype Development of a Micro Air Vehicle[J].Journal of Aircraft,1999,36(1):227~234.
  • 5[5] Shyy W,Berg M ,Ljungqvist D.Flapping and Flexible Wings for Biological and Micro Air Vehicles[J].Progress in Aerospace Sciences,1999,35(5):455~505.
  • 6[6] Spedding G R ,Lissaman P B S.Technical Aspects of Microscale Flight Systems[J].Journal of Avian Biology,1998,29(4):458~468.

共引文献47

同被引文献15

  • 1何靖楠,李宁华,张毅,张铁梅,黎健.国内外人口老龄化现状及我国面临的挑战[J].中华临床医师杂志(电子版),2011,5(13):3894-3897. 被引量:23
  • 2中华人民共和国国家统计局.2010年第六次全国人口普查主要数据公报(第1号)[EB/OL].http://www.stats.gov.cn/tjfx/jdfx/t20110428_402722253.htm,2011-04-28.
  • 3KINKAID T.Study of micro-sized technology,micro air vehicles,and design of a payload carrying flapping wing micro air vehicle[D].California:Naval Postgraduate School,2006.
  • 4WU Huaiyu,SUN Dong.Micro air vehicle:Configuration,analysis,fabrication and test[J].IEEE/ASME Transactions on Mechatronics,2004,9(1):108-117.
  • 5STEVEN A.Palm-size spy planes[J].Mechanical Engineering,1998,120(2):74-78.
  • 6McMICHAEL J M,FRANCIS M S.Micro air vehicles-toward a new dimension in flight[J].Unmanned System,1997,15(3):10-17.
  • 7KEENNON M T,GRASMEYER J M.Development of the black widow and microbat MAVs and a vision of the future of MAV design[R].AIAA,2003-2901,2003.
  • 8MARVIN:An autonomously operating flying robot[EB/OL].TU Berlin department of computer science,2006[2006-12-10].http://pdv.cs.tu-berlin.de/MARVIN/mark_ii_frameset_image_acquisition.html.
  • 9USC autonomous flying vehicle project[EB/OL].Autonomous flying vehicles of University of Southern California,2006[2006-12-10].http://www-robotics.usc.edu/~avatar/vision_hw.htm.
  • 10BERKELEY Aerobot (BEAR) testbeds and experiment facility[EB/OL].California:University of California,Berkeley,1849[2006-12-10].http://robotics.eecs.berkeley.edu/bear/testbeds.html.

引证文献2

二级引证文献21

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