Nova Patents
AU2006299727B2

Gravity gradiometer

Abstract

A gravity gradiometer is disclosed which has a sensor in the form of bars (41 and 42) which are supported on a mounting (5) which has a first mount section (10) and a second mount section (20). A first flexure web (33) pivotally couples the first and second mount sections about first axis. The second mount has first part (25), a second part (26) and a third part (27). The parts (25 and 26) are connected by second flexure web (37) and the parts (26 and 27) are connected by third flexure web (35). The bars (41 and 42) are located in housings (45 and 47) and form a monolithic structure with the housings (45 and 47) respectively. The housings (45 and 47) are connected to opposite sides of the second mount section 20. The bars (41 and 42) are connected to their respective housings by flexure webs (59).

AU2006299727B2, drawing sheet 1
Sheet 1 of 22

Term

Term ended

Expired 31 August 2026, 0.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

8 claims: 7 independent, 1 dependent

  1. 1
    The Claims as defined in the Invention are as follows:1. A gravity gradiometer for measuring components of the gravity gradient tensor, comprising: 5 a sensor for measuring the components of the gravity gradient tensor;a mounting for supporting the sensor for rotation about three substantially orthogonal axes;a stabilising mechanism for stabilising the mounting io by adjusting the mounting about at least one of the axes;and an angular accelerometer for providing a signal indicative of a rotation of the sensor to cause the stabilising mechanism to apply a force to the mounting to is counteract that rotation of the sensor and stabilise the mounting and sensor;and wherein the sensor is an orthogonal quadruple responder comprising a pair of sensor bars arranged orthogonal to one another and supported on the mounting 20 for pivoting movement about one of said axes and the angular accelerometer is supported on the mounting for movement with the sensor and comprises a pivoting accelerometer mass having a zero quadruple moment so the accelerometer mass is not sensitive to the gravity 25 gradient and centrifugal force errors whereby the angular accelerometer can produce a signal indicative only of a rotation of the sensor to be counteracted by the stabilising mechanism. 30 2. The gravity gradiometer of claim 1 wherein the sensor bars are formed in sensor housings carried on the mounting and coupled to the housings by respective sensor flexure webs for rotation about said one axis. 35 3. The gravity gradiometer as claimed in claim 1 or claim 2 wherein the accelerometer mass is formed in an accelerometer housing carried on the mounting and coupled 2703594.2 (GHMattere) PS84MAU.6 2006299727 16 Jun 2011 - 27 to the accelerometer housing by an accelerometer flexure web. 4. The gravity gradiometer of claim 3 wherein the s accelerometer mass is formed by a cut through the accelerometer housing except for where the accelerometer mass connects to the accelerometer housing by the accelerometer flexure web. 10 5. The gravity gradiometer of any one of claims 1 to 4 wherein the accelerometer mass is of chevron shape. 6. The gravity gradiometer of any one of claims 1 to 5 wherein the angular accelerometer is one of the plurality is of such accelerometers for providing signals indicative of rotations of the sensor about more than one of said three orthogonal axes. 7. A gravity gradiometer substantially as herein 20 described with reference to one or more of the drawings. 2703594.2 (GHMatters) P584MAU.8 WO 2007/038823 PCT/AU2006/001274 1/22 FIGURE 1 FIGURE 2 WO 2007/038823 PCT/AU2006/001274
  2. 2
    2/22 FIGURE 3 FIGURE 4 WO 2007/038823 PCT/AU2006/001274
  3. 3
    3/22 FIGURE 6 FIGURE 7
  4. 4
    4/22 WO 2007/038823 PCT/AU2006/001274 FIGURE 8 PCT/AU2006/001274 WO 2007/038823
  5. 5
    5/22 FIGURE 10 WO 2007/038823 PCT/AU2006/001274 101 Aircraft motion 52'
  6. 6
    6/22 External Platform .5 5 Disturbance force z F e K e Gimbals Feedback Actuator Controller Internal Platform H/ Angle KoAe Sensor Disturbance force T e Feedback Ao H, Actuator Angle Xr Controller Sensor '90 FIGURE 11 FIGURE 12 WO 2007/038823 PCT/AU2006/001274
  7. 7
    7/22 FIGURE 13 WO 2007/038823 PCT/AU2006/001274
  8. 8
    8/22 FIGURE 14 WO 2007/038823 PCT/AU2006/001274 10/22 FIGURE 16 WO 2007/038823 PCT/AU2006/001274 11/22 138α SUBSTITUTE SHEET (RULE 26) RO/AU WO 2007/038823 PCT/AU2006/001274 12/22 FIGURE 19 WO 2007/038823 PCT/AU2006/001274 13/22 FIGURE 20 ,0610° WO 2007/038823 PCT/AU2006/001274 15/22 FIGURE 22 WO 2007/038823 PCT/AU2006/001274 16/22 FIGURE 23 WO 2007/038823 PCT/AU2006/001274 17/22 305 FIGURE 24 WO 2007/038823 PCT/AU2006/001274 18/22 FIGURE 25 FIGURE 26 FIGURE 27 WO 2007/038823 PCT/AU2006/001274 19/22 FIGURE 30 ντο 2 00?/ ( °3882 3 2θ/2 2 '*<!/ } °6/0 0 127 4 21/22 WO 2007/038823 PCT/AU2006/001274 320 FIGURE 32 WO 2007/038823 PCT/AU2006/001274 22/22 FIGURE 33 FIGURE 34