EP0664008B1

Method and apparatus for tracking the position and velocity of airborne instrumentation

Abstract

This record has no abstract on file.

EP0664008B1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 6 August 2013, 13.1 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

9 claims: 3 independent, 6 dependent

  1. 1
    A method for tracking the position of at least one moving object (20) from a processing station wherein a receiver (R) in each of said moving objects intercepts wideband spread spectrum signals transmitted from a plurality of satellites passing above the horizon, the method characterized by (a) compressing said wideband signals received from each said satellite into a narrow band by a ratio of at least 100:1 without knowledge of the code sequence of said wideband signals;(b) removing frequency bias with a reference oscillator (12) having a frequency offset value whereby to produce a narrow baseband that will not pass into a negative frequency space;(c) forming said narrow baseband so as to be comprised of sine wave superpositions;(d) transmitting said baseband to said processing station and producing a digital representation of said sine wave superpositions at said processing station;(e) processing said digital representations to produce spectral lines composed of amplitude, frequency and phase values;(f) generating a synthetic spectrum including a frequency offset value corresponding to the frequency offset value of said reference oscillator based on approximate location and velocity of said satellites and converting to digital synthetic spectrum values representative of said spectrum;(g) comparing said spectral lines with said digital synthetic spectrum values to determine the identity of each said satellite corresponding to each said spectral line;and (h) estimating the reference oscillator frequency offset value and determining the location and velocity of each said moving object.
  2. 4
    An apparatus for tracking a moving object (20) at a processing station by intercepting wideband spread spectrum signals transmitted from a plurality of satellites in which the code sequence of said spread spectrum signals is not known, the apparatus comprising a receiver circuit (R) in said moving object comprising:(a) signal compressing means for compressing said wideband signals received from each said satellite into a narrow band including means (7) for producing in-phase and delayed path signals from said spread spectrum signals, and said signal compressing means including means (8) for multiplying said in-phase and delayed path signals whereby to compress said spread spectrum signals into a width of 70 Hz with a center frequency of 10.23 MHz;(b) baseband means (10) for forming a narrow analog baseband comprised of sine wave superpositions from said narrow band;(c) reference oscillator means (12) for removing any frequency bias present in said signal compressing means;and (d) means (14) for transmitting said baseband from said receiver circuit after any frequency bias has been removed.
  3. 8
    An apparatus for tracking the position of an airborne meteorological instrument (20) from a processing station on the ground wherein said instrument transmits meteorological data to said processing station and said instrument includes a receiver circuit (R) therein for intercepting wideband spread spectrum signals transmitted from a plurality of satellites passing above the horizon in which the code sequence of said spread spectrum signals is not known, the combination comprising:said receiver circuit including signal compressing means for compressing the band of the signals received from each said satellite into a narrow band, baseband means (10) for forming a narrow analog baseband comprised of sine wave superpositions from said narrow band, reference oscillator means (12) for removing any frequency bias present in said compressing means, including a reference oscillator whose stability is on the order of 10 ppm, means (14) for transmitting said baseband from said receiver circuit after any frequency bias has been removed;and said processing station including means (21) for receiving signals transmitted from said instrument including said meteorological data and said baseband, means (22, 23) for producing a digital representation of said sine wave superpositions in said baseband, means for processing said digitial representations to produce spectral lines composed of amplitude, frequency and phase values, and means (36) for estimating the frequency offset value of said reference oscillator to a precision on the order of 0.001 ppm in determining the location and velocity of said instrument.