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Adaptive sidelobe blanking for motion compensation

  • US 20110309972A1
  • Filed: 09/05/2008
  • Published: 12/22/2011
  • Est. Priority Date: 09/05/2008
  • Status: Active Grant
First Claim
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1. A method for providing electronic motion compensation for a moving platform mounted phased array radar antenna system subject to changes in roll, pitch and yaw which enables effective sidelobe blanking for accurately detecting targets when interference occurs, the radar system including a main antenna channel and at least one auxiliary antenna channel respectively for receiving main beam, auxiliary beam and side lobe antenna patterns from transmit/receive modules of the main and auxiliary antennas, the main and auxiliary channels being coupled to a sidelobe blanking (SLB) circuit for blanking out interference and whose output couples to a radar data processor included in the system to provide for accurate target detection, the method comprising:

  • (a) generating new sets of amplitude and phase digital coefficient values by a roll motion compensator modified as a function of roll angle information derived from platform motion data signals provided by the antenna system, each new set providing both the quadrant phase rotation and amplitude element weighting rotation;

    (b) applying the new sets of amplitude and phase digital coefficient values generated by the roll motion compensator to an auxiliary beam steering generator; and

    ,(c) during a receive cycle of operation, the auxiliary beam steering generator applying each new set of amplitude and phase weighting coefficient values to the transmit/receive module of the auxiliary antenna for causing both amplitude and phase rotation of the received auxiliary beam SLB antenna pattern resulting in a pattern broad enough to provide effective sidelobe blanking by the SLB circuit notwithstanding changes in platform roll angle motion.

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