期刊文献+

微小型四旋翼无人机研究进展及关键技术浅析 被引量:146

Research Progress and Key Technologies of Micro Quad-Rotor UAVs
在线阅读 下载PDF
导出
摘要 随着嵌入式处理器、微传感器技术和控制理论的发展和成熟,微小型四旋翼无人机逐步向高效、多功能化方向发展,并广泛应用于军事、民用、以及科学研究等多个领域。首先,从原型研发、平台集成和商业化应用3个方面介绍了目前国内外在该领域最新的研究情况。结合四旋翼无人机的特点,着重分析了微型机电系统、空气动力学设计、非线性系统建模以及飞行控制等关键技术。最后,在国内外研究进展和关键技术分析的基础上,指出了未来四旋翼无人机技术发展趋势。 With the development of embedded processors,micro-sensor technology and control theory,micro quad-rotor UAV is gradually developed to be more efficient and multi-functional,and has found wide application in military,civilian,scientific research and other fields.First of all,the latest research situation at home and abroad is introduced from three aspects of prototype research and development,platform integration and commercial application.Second,according to the characteristics of quad-rotor UAV,the key technologies of micro-electrical system,aerodynamic design,nonlinear system modeling and flight control are analyzed in detail.Finally,the future development trend of quad-rotor UAV is presented based on the research progress and key technologies analysis.
出处 《电光与控制》 北大核心 2010年第10期46-52,共7页 Electronics Optics & Control
基金 国防基础研究项目资助(A2820080247) 国家安全基础研究项目资助(6138101001)
关键词 四旋翼 无人机 进展 关键技术 quad-rotor Unmanned Aerial Vehicle(UAV) development key technology
作者简介 岳基隆(1982-),男,甘肃兰州人,硕士生,研究方向为微小型无人机自主飞行控制。
  • 相关文献

参考文献29

  • 1BOUABDALLAH S,BECKER M,SIEGWART R.Autonomous miniature flying robots:coming soon[J].IEEE Robotics & Automation Magazine,2007,14:88-98.
  • 2BOUABALLAH S,SIEGWART R.Full control of a quadrotor[C]//Proccedings of IEEE/RSJ International Conference on Intelligent Robots and Systems,2007:153-158.
  • 3BOUABDALLAH S,BECKER M,PERROT V D.Toward obstacle avoidance on quadrotors[C]//Proceedings of the Ⅻ International Symposium on Dynamic Problems of Mechanics,2007:153-158.
  • 4POUNDS P,MAHONY R,CORKE P.Modelling and control of a quad-rotor robot[C]//Proceedings of the Australasian Conference on Robotics and Automation,2008:27-29.
  • 5HOFFMANN G,RAJNARAYAN G,WASLANDER S L,et al.The stantonl testbed of autonomous rotoreraft for multiagent control[C]//AIAA Digital Avionics systems conference,2004,2:12.E.4-121-10.
  • 6HOFFMANN G M,HUANG H,WASLANDER S L,et al.Quadrotor helicopter flight dynamics and control:theory and experiment[C]//Proceedings of the AIAA Guidance,Navigation,and Control Conference and Exhibit,2007:20-23.
  • 7WASLANDER S,HOFFMANN G M,JANG J S,et al.Multi-agent quadrotor testbed control design:integral sliding mode vs reinforcement learning[C]//2005 IEEE/RSJ International Conference on Intelligent Robots and Systems,2005:468-473.
  • 8HOW J P,BETHKE B,FRANK A,et al.Real-time indoor autonomous vehicle test environment[J].IEEE Control Systems Magazine,2008,28(2):51-64.
  • 9胡明朗,魏瑞轩,邹凌云.微型飞行器的仿生感知与控制[J].传感器与微系统,2007,26(5):8-11. 被引量:4
  • 10HUANG Haomiao,HOFFMANN G M,WASLANDER S L,et al.Aerodynamics and control of autonomous quadrotor helicopters in aggressive maneuvering[C]//IEEE International Conference on Robotics and Automation,2009:3277-3282.

二级参考文献53

  • 1季斌南.长航时无人机的特点、作用及发展动向[J].国际航空,1997(2):28-30. 被引量:29
  • 2曲东才.微型无人机研制的关键技术及军事应用[J].飞机设计,2007,27(3):46-51. 被引量:16
  • 3Bouabdallah S, North A, Siegwart R. PID vs LQ control techniques applied to an indoor micro quadrotor[ C]//IEEE Trans on Intelligent Robots and Systems(IROS) ,2004:2451 -2456.
  • 4Erdinc Altug, Ostrowski J P, Taylor C J. Quadrotor control using dual camera visual feedback [ C ]// IEEE Trans on Robotics and Auromotion ,2003:4294 -4299.
  • 5Abdelhamid Tayebi, Stephen McGilvray. Attitude stabilization of a VTOL quadrotor aircraft [ C ]//IEEE Trans on Control Systems Technology,2006:562 -571.
  • 6[1]Taylor G K. Mechanics and Aerodynamics of Insect Flight Control. Cambridge Philosophical Society,2001,76: 449~471
  • 7[2]Levin O,Shyy W. Optimization of a Low Reynolds Number Airfoil with Flexible Membrane. Tech Science Press. CMES, 2001,2(4): 523~536
  • 8[3]Kubo Y,Shimoyama I,Miura H. Study of Insectbased Flying Microrobots. Proceeding of the IEEE International Conference on Robotics and Automation, Atlanta, USA, 1993
  • 9[4]Kubo Y,Shimoyama I,Kaneda T,et al. Study on Wings of Flying Microrobots. Proceeding of the IEEE International Conference on Robotics and Automation, California , USA, 1994
  • 10[6]徐华舫.空气动力学基础.北京:北京航空学院出版社,1986

共引文献255

同被引文献873

引证文献146

二级引证文献883

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