IL129651A

High-precision measuring method and apparatus

Abstract

A method and apparatus of measuring a predetermined parameter having a known relation to the transit time of movement of an energy wave through a medium, by transmitting from a first location in the medium a cyclically-repeating energy wave; receiving the cyclically-repeating energy wave at a second location in the medium; detecting a predetermined fiducial point in the cyclically-repeating energy wave received at the second location; continuously changing the frequency of transmission of the cyclically-repeating energy wave from the first location to the second location in accordance with the detected fiducial point of each received cyclically-repeating energy wave received at the second location such that the number of waves received at the second location from the first location is a whole integer; and utilizing the change in frequency to produce a measurement of the predetermined parameter.

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

38 claims: 17 independent, 21 dependent

  1. 1
    WHAT IS CLAIMED IS:1 . A method of measuring a predetermined parameter having a known relation to the transit time of movement of an energy wave through a medium, comprising: transmitting from a first location in said medium a cyclically-repeating energy wave;receiving said cyclically-repeating energy wave at a second location in said medium;detecting a predetermined fiducial point in the cyclically-repeating energy wave received at said second location;continuously changing the frequency of transmission of the cyclically-repeating energy wave from said first location to said second location in accordance with the detected fiducial point of each cyclically-repeating energy wave received at said second location such that the number of waves received at said second location from said first location is a whole integer;and utilizing the change in frequency to produce a measurement of said predetermined parameter.
  2. 3
    The method according to either of Claims 1 or 2, wherein said predetermined fiducial point is the zero cross-over point of the cyclically-repeating energy wave.
  3. 5
    The method according to any one of Claims 1-4, wherein said changes in the frequency of said cyclically-repeating energy wave are measured by summing the changes in frequency over a large predetermined number of cycles to increase the precision of said measurement.
  4. 9
    The method according to any one of Claims 1-8, wherein the echo of said cyclically-repeating energy wave, after reflection from an object, is received at said second location.
  5. 10
    The method according to any one of Claims 1-8, wherein the cyclically-repeating energy wave is directly received at said second location.
  6. 11
    The method according to any one of Claims 1-10, wherein said cyclically-repeating energy wave is an acoustical wave transmitted through said medium.
  7. 16
    19. The method according to any one of Claims 1-10, wherein said cyclically-repeating energy wave is an electromagnetic wave.
  8. 18
    21. Apparatus for measuring a predetermined parameter having a known relation to the transit time of movement of an energy wave through a medium, comprising:a transmitter at a first location in said medium for transmitting a cyclically-repeating energy wave;a receiver at a second location in said medium for receiving said cyclically-repeating energy wave;and a processor for: detecting a predetermined fiducial point in the cyclically-repeating energy wave received at said second location;continuously changing the freguency of transmission of the cyclically-repeating energy wave from said first location to said second location in accordance with the detected fiducial point of each cyclically-repeating energy wave received at said second location such that the number of waves received at said second location from said transmitter is a whole integer;18 and utilizing the change in frequency to produce a measurement of said predetermined parameter.
  9. 20
    23. The apparatus according to either of Claims 21 or 22, wherein said processor detects the zero cross-over point of each cyclically-repeating energy wave for continuously changing the frequency of transmission of the cyclically-repeating energy wave from said first location to said second location.
  10. 21
    24. The apparatus according to any one of Claims 21-23, wherein said cyclically-repeating energy wave is a sinusoidal wave.
  11. 22
    25. The apparatus according to any one of Claims 21-24, wherein said processor includes a summing circuit for continuously summing the changes in the measured parameter and for producing periodic readouts of the summed changes.
  12. 24
    27. The apparatus according to any one of Claims 21-26, wherein said receiver is located with respect to said transmitter so as to receive the echo of said cyclically-repeating energy wave after reflection from an object.
  13. 25
    28. The apparatus according to any one of Claims 21-26, wherein said receiver is located with respect to said transmitter so as to directly receive said cyclically-repeating energy wave transmitted thereby.
  14. 26
    29. The apparatus according to any one of Claims 21-28, wherein said transmitter transmits a cyclically-repeating acoustical wave.
  15. 35
    38. The apparatus according to any one of Claims 21-28, wherein said transmitter transmits a cyclically-repeating electromagnetic wave through said medium.
  16. 37
    40. A method of measuring a predetermined parameter having a known relation to the transit time of movement of an energy wave through a medium, according to any one of Claims 1-20, substantially as described with reference to and as illustrated in the accompanying drawings .
  17. 38
    41. Apparatus for measuring a predetermined parameter having a known relation to the transit time of 129651/2 - 21 - movement of an energy wave through a medium, according to any one of Claims 21-39, substantially as described with reference to and as illustrated in the accompanying drawings. y K Dr. Gal Ehrlich Patent Attorney G.E. Ehrlich (1995) Ltd. 11 Menachem Begin Street 52 521 Ramat Gan
Independent claims17