Threat Detection and Tracking using 3D FLASH LADAR Data

被引:1
|
作者
Gronwall, Christina [1 ]
Tolt, Gustav [1 ]
Karlsson, Daniel [1 ]
Esteki, Hadi [1 ]
Rydell, Joakim [1 ]
Armstrong, Ernest E. [2 ]
Woods, Jack [3 ]
机构
[1] Swedish Def Res Agcy FOI, POB 1165, SE-58111 Linkoping, Sweden
[2] OptiMetr Inc, Ann Arbor, MI 48104 USA
[3] RYJM, US Air Force Res Lab, Wright Patterson AFB, OH 45433 USA
关键词
detection; tracking; occlusion; laser radar; range data;
D O I
10.1117/12.849973
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Laser-based 3D sensors measure range with high accuracy and allow for detection of objects behind various type of occlusion, e. g., tree canopies. Range information is valuable for detection of small objects that are typically represented by 5-10 pixels in the data set. Range information is also valuable in tracking problems when the tracked object is occluded under parts of its movement and when there are several objects in the scene. In this paper, on-going work on detection and tracking are presented. Detection of partly occluded vehicles is discussed. To detect partly occluded objects we take advantage of the range information for removing foreground clutter. The target detection approach is based on geometric features, for example local surface detection, shadow analysis and height-based detection. Initial results on tracking of humans are also presented. The benefits with range information are discussed. Results are illustrated using outdoor measurements with a 3D FLASH LADAR sensor and a 3D scanning LADAR.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Real-time 3D flash ladar imaging through GPU data processing
    Wong, Chung M.
    Bracikowski, Christopher
    Baldauf, Brian K.
    Havstad, Steven A.
    PARALLEL PROCESSING FOR IMAGING APPLICATIONS, 2011, 7872
  • [2] Advanced 3D polarimetric flash ladar imaging through foliage
    Murray, JT
    Moran, SE
    Roddier, N
    Vercillo, R
    Bridges, R
    Austin, W
    LASER RADAR TECHNOLOGY AND APPLICATIONS VIII, 2003, 5086 : 84 - 95
  • [3] 3D Flash LiDAR Object Detection and Tracking on Edge Hardware
    Lompado, Art
    Carvalho, Daniel R. M.
    Brown, Jarrod P.
    IEEE NATIONAL AEROSPACE AND ELECTRONICS CONFERENCE, NAECON 2024, 2024, : 25 - 29
  • [4] 3D rover localization in airborne ladar data
    Vandapel, N
    Hebert, M
    EXPERIMENTAL ROBOTICS VIII, 2003, 5 : 156 - 167
  • [5] 3-D flash LADAR at Raytheon
    Halmos, MJ
    Jack, M
    Asbrock, J
    Anderson, C
    Bailey, S
    Chapman, G
    Gordon, E
    Herning, P
    Kalisher, M
    Klaras, L
    Kosai, K
    Liquori, V
    Pines, M
    Randall, V
    Reeder, R
    Rosbeck, J
    Sen, S
    Trotta, P
    Wetzel, P
    Hunter, A
    Jensen, J
    DeLyon, T
    Trussell, W
    Hutchinson, A
    Balcerak, R
    LASER RADAR TECHNOLOGY AND APPLICATIONS VI, 2001, 4377 : 84 - 97
  • [6] Pedestrian Detection and Tracking Using Three-Dimensional LADAR Data
    Navarro-Serment, Luis E.
    Mertz, Christoph
    Hebert, Martial
    FIELD AND SERVICE ROBOTICS, 2010, 62 : 103 - 112
  • [7] Pedestrian detection and tracking using three-dimensional LADAR data
    Navarro-Serment L.E.
    Mertz C.
    Hebert M.
    Springer Tracts in Advanced Robotics, 2010, 62 : 103 - 112
  • [8] Pedestrian Detection and Tracking Using Three-dimensional LADAR Data
    Navarro-Serment, Luis E.
    Mertz, Christoph
    Hebert, Martial
    INTERNATIONAL JOURNAL OF ROBOTICS RESEARCH, 2010, 29 (12): : 1516 - 1528
  • [9] A Robust and Efficient 3D LADAR Odometer with Outlier Detection
    Zhu, Zhen
    de Haag, Maarten Uijt
    JOURNAL OF NAVIGATION, 2018, 71 (02): : 317 - 338
  • [10] The Application of Iterative Closest Point (ICP) Registration to Improve 3D Terrain Mapping Estimates Using the FLASH 3D LADAR System
    Woods, Jack
    Armstrong, Ernest E.
    Armbruster, Walter
    Richmond, Richard
    LASER RADAR TECHNOLOGY AND APPLICATIONS XV, 2010, 7684