期刊文献+

基于抛物线随机Hough变换的机载脉冲多普勒雷达机动弱目标检测前跟踪方法 被引量:3

A RPHT-TBD Algorithm for Tracking and Detecting Maneuvering Weak Target via Airborne PD Radar
在线阅读 下载PDF
导出
摘要 为解决机载脉冲多普勒(PD)雷达对机动弱目标进行检测与跟踪的问题,构造了一种基于抛物线随机Hough变换(RPHT)的检测前跟踪(TBD)算法。该算法通过模糊区间对目标的模糊量测进行距离多假设扩展,从而提取量测中的时空相关信息。利用RPHT方法将目标扩展量测转换到参数空间,并在参数空间对目标的机动航迹进行积累。在算法实现过程中,通过方位变换的方式对传统的RPHT方法进行了改进,以降低算法计算复杂度。该方法将机动弱目标解距离模糊问题转换为TBD框架下基于RPHT的航迹检测问题,避免了微弱目标的低信噪比造成的航迹漏检。仿真结果验证了该算法的有效性。 To address the problem of maneuvering weak target detection and tracking with airborne pulse Doppler( PD) radar in medium and high PRF modes,a novel randomized parabolic Hough transform algorithm( RPHT) is proposed within the framework of track-before-detection( TBD). The ambiguous measurements are mapped into all the possible range ambiguity intervals by a multiple hypothesis ranging procedure,where the space-time relevance can be derived. RPHT is used to integrate all the information along the target trajectory in the parameter space. And an azimuth transformation method is introduced to RPHT,which significantly reduces the computational complexity of this algorithm. In such a way,the new approach transforms the problem of range ambiguity resolution into the decision of the real track for weak targets. Simulation results illustrate its effectiveness.
出处 《兵工学报》 EI CAS CSCD 北大核心 2015年第10期1924-1932,共9页 Acta Armamentarii
基金 国家自然科学基金项目(61179018 61372027 61501489)
关键词 雷达工程 机载脉冲多普勒雷达 机动弱目标 抛物线随机Hough变换 检测前跟踪 距离多假设 方位变换 radar engineering airborne pulse Doppler radar maneuvering weak target randomized parabolic Hough transform track-before-detection multiple hypothesis ranging azimuth transform
  • 相关文献

参考文献11

二级参考文献108

共引文献83

同被引文献30

  • 1郭云飞,郑晓枫,彭冬亮,曾泽斌.基于遍历Hough变换的弱目标检测前跟踪算法[J].系统仿真学报,2015,27(6):1316-1323. 被引量:4
  • 2XIAO S,TAN X S, WANG H, etal. Detection system research onnear space hypersonic flight vehicleabroad [ J ]. Aerodynamic MissileJournal, 2012,6;28-31.
  • 3WANG W Q. Near-space vehicle-bome SAR with reflector antenna forhigh-resolution and wide-swath re-mote sensing [ J ]. IEEE Transac-tions on Geoscience and RemoteSensing, 2012,50(2) ;338-348.
  • 4YANG Y N, WU J, XIE Y, et al. Dy-namics modeling and maneuverabili-ty analysis of a near-space earth ob-servation platform [ C J//IEEE The5 th International Conference on Re-cent Advances in Space Technolo-gies, 2011;223-226.
  • 5ORLANDO D,VENTURINO L, LOPSM, et al. Track-before-detect strate-gies for STAP radars [ J ]. IEEE Tran-sactions on Signal Processing, 2010,58(2) ;933-938.
  • 6ORLANDO D, RICCI G, BAR-SHA-LOM Y. Track -before - detect algo-rithms for targets with kinematic con-straints [J ] . IEEE Transactions onAerospace and Electronic Systems,2011,47(3)..1837-1849.
  • 7CARLSON B D, EVANS E D, WIL-SON S L. Search radar detection andtrack with the Hough transform partI ; system concept [ J ]. IEEE Tran-sactions on Aerospace and ElectronicSystems, 1994, 30(1) ; 102-108.
  • 8MOYER L R, SPAK J,LAMANNA P.A multi - dimensional hough trans-formbased track-before-detect techniquefor detecting weak targets in strongclutter backgrounds [ J ] . IEEE Tran-sactions on Aerospace and ElectronicSystems, 2011,47(4) ; 3062-3068.
  • 9XU L, OJA E. Randomized HoughTransform ( RHT ) ; basic mecha-nisms, algorithms, and computationalcomplexities [ J ]. Computer Vision &Image Understanding, 1993,57 ( 2 );131-154.
  • 10FAN L. Research on track-before-detect algorithms for weak targets[D ]. Chengdu; University of Electro-nic Science and Technology of China,2013.

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