Small SWAP 3D Imaging Flash Ladar for Small Tactical Unmanned Air Systems

被引:1
|
作者
Bird, Alan [1 ]
Anderson, Scott A. [1 ]
Wojcik, Michael [1 ]
Budge, Scott E. [2 ]
机构
[1] Space Dynam Lab, North Logan, UT 84341 USA
[2] Utah State Univ, Logan, UT 84322 USA
关键词
ladar; Small Tactical Unmanned Aircraft System; STUAS; flash ladar; flash lidar; 3D imaging; SWAP; UAV;
D O I
10.1117/12.2177222
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The Space Dynamics Laboratory (SDL), working with Naval Research Laboratory (NRL) and industry leaders Advanced Scientific Concepts (ASC) and Hood Technology Corporation, has developed a small SWAP (size, weight, and power) 3D imaging flash ladar (LAser Detection And Ranging) sensor system concept design for small tactical unmanned air systems (STUAS). The design utilizes an ASC 3D flash ladar camera and laser in a Hood Technology gyro-stabilized gimbal system. The design is an autonomous, intelligent, geo-aware sensor system that supplies real-time 3D terrain and target images. Flash ladar and visible camera data are processed at the sensor using a custom digitizer/frame grabber with compression. Mounted in the aft housing are power, controls, processing computers, and GPS/INS. The onboard processor controls pointing and handles image data, detection algorithms and queuing. The small SWAP 3D imaging flash ladar sensor system generates georeferenced terrain and target images with a low probability of false return and <10 cm range accuracy through foliage in real-time. The 3D imaging flash ladar is designed for a STUAS with a complete system SWAP estimate of <9 kg, <0.2 m(3) and <350 W power. The system is modeled using LadarSIM, a MATLAB (R) and Simulink (R)-based ladar system simulator designed and developed by the Center for Advanced Imaging Ladar (CAIL) at Utah State University. We will present the concept design and modeled performance predictions.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] MEMS-scanned ladar for small unmanned air vehicles
    Stann, Barry L.
    Dammann, John F.
    Giza, Mark M.
    Ruff, William C.
    LASER RADAR TECHNOLOGY AND APPLICATIONS XXIII, 2018, 10636
  • [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] Multisensor 3D tracking for counter small unmanned air vehicles (CSUAV)
    Vasquez, Juan R.
    Tarplee, Kyle M.
    Case, Ellen E.
    Zelnio, Anne M.
    Rigling, Brian D.
    ACQUISITION, TRACKING, POINTING, AND LASER SYSTEMS TECHNOLOGIES XXII, 2008, 6971
  • [4] Operation of small sensor payloads on tactical sized unmanned air vehicles
    Patterson, M. C. L.
    Brescia, A.
    AERONAUTICAL JOURNAL, 2010, 114 (1157): : 427 - 436
  • [5] A model and simulation to predict the performance of angle-angle-range 3D flash LADAR imaging sensor systems
    Grasso, RJ
    Odhner, JE
    Russo, LE
    McDaniel, RV
    LASER RADAR TECHNIQUES FOR ATMOSPHERIC SENSING, 2004, 5575 : 91 - 105
  • [6] Multiple surface range Estimation in 3D Flash imaging ladar via Expectation maximization
    Zhao Wen
    Han Shaokun
    2013 10TH INTERNATIONAL BHURBAN CONFERENCE ON APPLIED SCIENCES AND TECHNOLOGY (IBCAST), 2013, : 446 - 450
  • [7] 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
  • [8] Real-time 3D ladar imaging
    Cho, Peter
    Anderson, Hyrum
    Hatch, Robert
    Ramaswami, Prern
    SIGNAL PROCESSING, SENSOR FUSION, AND TARGET RECOGNITION XV, 2006, 6235
  • [9] ROIC for gated 3D imaging LADAR receiver
    Chen, Guoqiang
    Zhang, Junling
    Wang, Pan
    Zhou, Jie
    Gao, Lei
    Ding, Ruijun
    INTERNATIONAL SYMPOSIUM ON PHOTOELECTRONIC DETECTION AND IMAGING 2013: INFRARED IMAGING AND APPLICATIONS, 2013, 8907
  • [10] Threat Detection and Tracking using 3D FLASH LADAR Data
    Gronwall, Christina
    Tolt, Gustav
    Karlsson, Daniel
    Esteki, Hadi
    Rydell, Joakim
    Armstrong, Ernest E.
    Woods, Jack
    AUTOMATIC TARGET RECOGNITION XX; ACQUISITION, TRACKING, POINTING, AND LASER SYSTEMS TECHNOLOGIES XXIV; AND OPTICAL PATTERN RECOGNITION XXI, 2010, 7696