期刊文献+

基于航迹点控制的无人机目标跟踪算法 被引量:2

Fixed-wing UAV target tracking algorithm based on tracking-point control
下载PDF
导出
摘要 由于运动速度的差异性,固定翼无人机跟踪机动目标时,需要规划特殊的航迹才能达到较好的跟踪效果。根据无人机的机动特性对系统进行了建模,设计了基于航迹点控制的固定翼无人机目标跟踪算法,并对该算法的性能进行了仿真,仿真结果表明该算法实时性强,当目标进行各种运动时都能有效保证无人机目标跟踪的可靠性。 When the fixed-wing UAV tracking maneuver target, because of the different speed of the target and UAV, a special trajectory should be programmed to achieve good tracking effect. The system model was built based on the moving capable of UAV, and a tracking-point control algorithm was designed and simulated, the simulation results indicate that this algorithm has good real time performance, and can effectively ensure the reliability of the UAV target tracking when the target has a wide variety of sports.
出处 《信息技术》 2013年第2期113-116,共4页 Information Technology
关键词 固定翼无人机 目标跟踪 航迹点控制法 fixed-wing UAV target tracking tracking-point control
  • 相关文献

参考文献7

  • 1崔秀敏,王维军,方振平.小型无人机发展现状及其相关问题分析[J].飞行力学,2005,23(1):14-18. 被引量:30
  • 2李志宇,徐烨烽,杨国梁.跟踪地面目标的小型无人机飞行控制仿真研究[J].科学技术与工程,2008,8(5):1374-1378. 被引量:6
  • 3H Bryson A E Y C.Applied Optimal Control[M].Hemisphere,NewYork,USA:Prentice-Hall,1975.
  • 4Kirk E D.Optimal Control Theory[M].Englewood Cliffs,NewJersey,USA:Prentice-Hall,1970.
  • 5D A Lawrence.Lyapunov Vector Fields for UAV Flock Coordination[C]//2nd AIAA"Unmanned Unlimited"Systems,Technologies,and operations-Aerospac San Diego,California,USA,2003.
  • 6R Rysdyk.UAV Path Fellowing for Constant Line-of-Sight[C]//2nd AIAA"Unmanned Unlimited"Systems,Technologies,andOperations-Aerospac San Diego,California,USA,2003.
  • 7DAM Frazzoli E,Feron E.Real-Time Motion Planning for Agile Au-tonomous Vehicles[J].Journal of Guidance,Control,and Dyna-mics,2002,25:116-129.

二级参考文献12

  • 1霍华.,RM,卢秋香.米尺寸无人驾驶飞机飞行品质的飞行试验[J].国外试飞,1995(4):6-10. 被引量:1
  • 2[4]Lizarraga M I.Autonomous landing system for a UAV.Monterey CA:Naval Postgraduate School,2004
  • 3时捷.无人机与无人战斗机最终将加入空战机群行列.无人机,2003,(1):43-45.
  • 4Fei-Bin Hsiao.The Design of Stability Control System and Constructing Simple Navigation System for a Long Endurance Autonomous UAV[R].AIAA-2002-3469,2002.
  • 5Jennifer Evans,Gokhan Inalhan,Jung Soon Jang,et al.Dragonfly:A Versatile UAV Platform for the Advancement of Aircraft Navigation and Control[R].Department of Aeronautics and Astronautics,Stanford University,2001.
  • 6Marius Niculescu.Lateral Track Control Law for Aerosonde UAV[R].AIAA-2001-0016,2001.
  • 7Ella M Atkins.Solus:An Autonomous Aircraft for Flight Control and Trajectory Planning Research[R].Proceeding of the American Control Conference Philadephia,Pennsylvania,1998.
  • 8计秀敏.微型飞行器的发展及其应用前景[DB/OL].http://www. chinese163. com/lunwen/2004/5-17/84730.html,2004.
  • 9Joel M Grasmeyer.Development of the Black Widow Micro Air Vehicle[R].AIAA-2001-0127,2001.
  • 10航空工业科技信息中心.微型无人机之微型蝙蝠(图)[EB/OL].http://www.china.org.cn/chinese/junshi/263320.htm,2003-01-07.

共引文献34

同被引文献16

引证文献2

二级引证文献46

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