• DocumentCode
    2761877
  • Title

    GPS and radar aided inertial navigation system for missile system applications

  • Author

    Ornedo, R.S. ; Farnsworth, Kenneth A. ; Sandhoo, Gurpartap S.

  • Author_Institution
    Raytheon Syst. Co., Tucson, AZ, USA
  • fYear
    1998
  • fDate
    20-23 Apr 1998
  • Firstpage
    614
  • Lastpage
    621
  • Abstract
    This paper provides an overview and preliminary performance assessment of an adapted version of the Raytheon Systems Company GPS Aided Inertial Navigation System (GAINS) for missile systems. In this particular application, a missile is fired off a ship to intercept an incoming target. The missile and the target are tracked by a ship-based radar system. The success of the mission depends on the missile navigation accuracy and the removal of alignment error between the missile and radar tracking system. The missile on-board inertial navigation system implements a Kalman filter to determine in-flight corrections to the navigation and radar alignment errors. The filter processes the GPS pseudo-range and delta range measurements as well as the ship-uplinked radar data. Descriptions of the GAINS navigation and alignment processing are discussed. Performance results obtained from time domain Monte Carlo simulation analysis are presented for a representative scenario. The results of the analysis show that improved navigation and radar alignment accuracy can be achieved by using both radar and GPS measurements rather than by using radar measurements only. This translates to improved design margin and reduced performance risk. On-going laboratory, field, and flight tests are also discussed
  • Keywords
    Global Positioning System; Kalman filters; Monte Carlo methods; inertial navigation; missile guidance; radar applications; radionavigation; ships; GAINS; GPS Aided Inertial Navigation System; Kalman filter; Raytheon Systems Company; alignment error; delta range measurement; missile system; pseudo-range measurement; radar aided inertial navigation system; ship; time domain Monte Carlo simulation; Error correction; Filters; Global Positioning System; Inertial navigation; Marine vehicles; Missiles; Performance gain; Radar measurements; Radar tracking; Target tracking;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Position Location and Navigation Symposium, IEEE 1998
  • Conference_Location
    Palm Springs, CA
  • Print_ISBN
    0-7803-4330-1
  • Type

    conf

  • DOI
    10.1109/PLANS.1998.670222
  • Filename
    670222