• Title of article

    Tracking evasive move-stop-move targets with a GMTI radar using a VS-IMM estimator

  • Author/Authors

    Y.، Bar-Shalom, نويسنده , , T.، Kirubarajan, نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    -1097
  • From page
    1098
  • To page
    0
  • Abstract
    We present the design of a variable structure interacting multiple model (VS-IMM) estimator for tracking evasive ground targets using ground moving target indicator (GMTI) reports obtained from an airborne sensor. In order to avoid detection by the GMTI sensor, the targets use a "move-stop-move" strategy, where a target deliberately stops or moves at a very low speed for some time before accelerating again. In this case, when the targetʹs radial velocity (along the line of sight from the sensor) falls below a certain minimum detectable velocity, the target is not detected by the sensor. Under these conditions, the use of an estimator, which does not take care of this move-stop-move motion explicitly, will result in broken tracks. The tracker proposed here handles the evasive move-stop-move motion via the VS-IMM estimator, where the tracker mode set is augmented with a "stoppedtarget" model when the estimated speed of the target falls below a certain threshold. Using this additional stopped-target model, the target track is kept "alive" even in the absence of a measurement. A simulated scenario is used to illustrate the selection of design parameters and the operation of the tracker. Performance measures are presented to contrast the benefits of the VS-IMM estimator, which uses the stopped-target model, over a standard IMM estimator.
  • Keywords
    mid-infrared , multiple-wavelength emission , quantum cascade laser , nonlinear optics , Quantum wells , Second-harmonic generation , Intersubband transitions
  • Journal title
    IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS
  • Serial Year
    2003
  • Journal title
    IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS
  • Record number

    90555