期刊文献+

任务请求模式下无人机战场态势显示系统设计 被引量:3

Design of UAV Battlefield Situation Display System in Task-Request Mode
下载PDF
导出
摘要 任务请求模式是高空长航时无人机重要的作战使用模式,该模式下无人机侦察数据的判读和综合信息的显示存在着判读数据和综合信息所需的背景情报分散、目标关联困难等问题,需要将无人机的侦察数据、无人机综合信息与战场态势等相关背景信息进行情报结合和关联显示。为此,通过分析任务请求模式下高空长航时无人机作战模式和态势信息流程,总结该作战模式下无人机态势信息显示的可行性需求,进行了任务请求模式下无人机战场态势显示系统的概要设计。该系统利用通用战场态势等背景信息辅助进行无人机侦察数据的判读和综合信息的显示,可有效辅助无人机侦察任务的开展和执行。 Task-Request mode is an important operational mode used by HALE(high-altitudelong-endurance)UAV,under this mode,problems like background intelligence dispersion,targetassociation difficulty and so on exist in reconnaissance data interpretation and comprehensiveinformation display of UAV,it’s necessary to conduct association display of UAV reconnaissance dataand UAV integrated information combined with information like battlefield situation under the samedisplay system.By analyzing operational mode and situation information flow of HALE UAV in Task-Request mode,concluded UAV situation feasible display need under this mode,the outline design ofthe UAV battlefield situation display system is carried out.This system conducts interpretation of UAVreconnaissance data and display of comprehensive information with assistance of backgroundinformation like general battlefield situation,by which it could effectively assist in implementation andexecution of UAV reconnaissance missions.
作者 徐冠华 董彦非 王超 王钊 XU Guan-hua;DONG Yan-fei;WANG Chao;WANG Zhao(School of Aircraft Engineering NanChang HangKong University,Nanchang 330063,China;Xi’an Aeronautical University,Xi’an 710077,China)
出处 《火力与指挥控制》 CSCD 北大核心 2017年第2期109-113,118,共6页 Fire Control & Command Control
基金 航空科学基金(2011ZA56001) 校级研究生创新基金资助项目(YC2015038)
关键词 任务请求模式 高空长航时无人机 战场态势 显示系统 Task-Request mode HALE UAV battlefield situation display system
  • 相关文献

参考文献7

二级参考文献30

  • 1高祥武,黄广民,杨汝良.机载SAR目标快速定位方法和定位精度分析[J].现代雷达,2004,26(9):4-7. 被引量:23
  • 2杨强,陈敏,汤晓安,杨耀明,赵周.三维静态军标的实时生成与标绘[J].计算机工程与设计,2007,28(14):3419-3421. 被引量:11
  • 3Brenner A R and Ender J H G. Demonstration of advanced reconnaissance techniques with the airborne SAR/GMTI sensor PAMIR[J]. IEE Proceedings-Radar, Sonar and Navigation, 2006, 153(2}: 152-162.
  • 4Entzminger J N, Senior JR, Fowler C A, et al.. JointSTARS and GMTI: past, present and future[J]. IEEE Transactions on Aerospace and Electronic Systems, 1999, 35(2): 748-761.
  • 5Zhealg Zeng-hui, Zhu Ju-bo, and Wang Yong-liealg. Local degrees of freedom of clutter for airborne space-time adaptive processing radar with subarrays[J], lET Radar, Sonar & Navigation, 2012, 6(3): 130-136.
  • 6Yan He, Wang Robert, Li Fei, et al.. Ground moving target extraction in a multichannel wide-area surveillance SAR/ GMTI system via the relaxed PCP[J]. IEEE Geoscience and Remote Sensing Letters, 2013, 10(3): 617-621.
  • 7Cerutti-Maori D, Klare J, Brenner A R, et al. Wide-area traffic monitoring with the SAR/GMIT system PAMIR[J]. IEEE Transactions on Geoscience and Remote Sensing, 2008, 46(10): 3019-3030.
  • 8《世界无人机大全》编写组[编],冯密荣.世界无人机大全[M]航空工业出版社,2004.
  • 9Li J, Li G J, Hou W, et al. The research on virtual assembly technology and its application based on OSG[J]. Lecture Notes in Computer Science, 2013, 7719(1): 282-296.
  • 10肖鹏,刘更代,徐明亮.OpenSceneGraph三维渲染引擎编成指南[M].北京:清华大学出版社,2010:2.

共引文献107

同被引文献22

引证文献3

二级引证文献6

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