Nova Patents
EP0473082A2

Radar altimeter.

Abstract

A radar altimeter (10) incorporates circuitry for automatically adjusting altitude readings for variations caused by altitude and temperature changes. Normal target tracking (32,20,15) of the radar is intermittently interrupted and a calibration sequence is interjected. The current altitude and receiver AGC information at the time of each interruption is temporarily stored (56,101) and a test is initiated in which a pseudo radar return at that altitude is introduced to the receiver (28). The receiver operates on the pseudo return as it would on an actual return. The transmit power is adjusted automatically for the correct signal level at the tracker. The resultant altitude measured for the pseudo return is compared to a known test altitude and any difference is stored (52) away as a correction factor to be applied to the altitude reading which had been stored at the time that its operation had been interrupted to perform the calibration test.

EP0473082A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 24 August 2011, 15.1 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

5 claims: 1 independent, 4 dependent

  1. 1
    Aircraft radar altimeter for compensating for changes in operation conditions of the aircraft, comprising:(a) transmitting means (16,12,22) responsive to a trigger event (TO) for delivering a transmit pulse to a transmitting antenna (24);(b) receiver means (28) normally coupled to a receiving antenna (26) for receiving a ground return pulse delayed from said triggering event by a first time interval corresponding to the distance between said aircraft and the earth;and(c) a closed loop tracking means (32,20,15) for alternatively aligning a range gate with said ground return;characterized by(d) a calibration path (63) operative to periodically directly couple said transmitting means to said receiving means;(e) first memory means (56) for temporarily storing actual tracked altitude values, said memory means being addressed by an address value corresponding to said first time interval;(f) means (58) for operatively coupling said first memory means to said transmitting means (16,12,22) for generating a pseudo-ground return for said receiving means when said calibration path (63) directly couples said transmitting means to said receiving means, said pseudo-ground return being delayed from said trigger event by an interval corresponding to a discrete altitude read out from said first memory means (56), said tracking means (32,20,15) operating to align said range gate with said pseudo-ground return;(g) means (62) for subtracting a value corresponding to the interval between said trigger event and said range gate aligned with said pseudo-ground return from said value corresponding to said altitude to develop a correction factor;(h) second memory means (52) for temporarily storing said correction factor;and(i) means (50) coupled to said second memory means for modifying said first time interval by said correction factor.