EP1519202B1

System and method for determining the position of a wireless CDMA transceiver

Abstract

This record has no abstract on file.

EP1519202B1, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Expired 16 March 2019, 7.5 years ago.

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

10 claims: 2 independent, 8 dependent

  1. 1
    A mobile wireless transceiver (20, 26) that supports the determination of its position according to the method of claim 4, comprising:means for receiving satellite identification information, Doppler shift information, and pseudo range information from a base station (10,11), wherein the Doppler shift information includes a Doppler shift of signals transmitted from first and second satellites (60,70,80,90), respectively, relative to said base station (10,11), and wherein the pseudo range information includes a first set of pseudo ranges of the first and second satellites (60,70,80,90), respectively, relative to said base station (10,11);means for utilizing said information received from said base station (10,11) to identify a second set of pseudo ranges between said wireless transceiver (20,26) and said first and second satellites (60,70,80,90), respectively, at a time t x ;and means for sending to said base station (10,11) said second set of pseudo ranges between said wireless transceiver (20,26) and said first and second satellites (60,70,80,90), respectively, along with time information t x .
  2. 2
    A system for determining a position of a mobile wireless transceiver (20,26) comprising:a base station (10,11);means for calculating Doppler shift information including a Doppler shift of signals transmitted from first and second satellites (60,70,80,90), respectively, relative to the base station (10,11);and means for calculating pseudo range information including a first set of pseudo ranges of the first and second satellites (60,70,80,90), respectively, relative to said base station (10,11);said means for sending satellite identification information, said Doppler shift information, and said pseudo range information between said base station (10,11) and said wireless transceiver (20,26);means disposed at said wireless transceiver (20,26) for receiving said satellite identification information, said Doppler shift information, and said pseudo range information from said base station (10,11);means disposed at said wireless transceiver (20,26) for utilizing said information received from said base station (10,11) to identity a second set of pseudo ranges between said wireless transceiver (20,26) and said first and second satellites (60,70,80,90), respectively, at a time t x ;means disposed at said wireless transceiver (20,26) for sending to said base station (10,11) a signal containing said second set of pseudo ranges between said wireless transceiver (20,26) and said first and second satellites (60,70,80,90), respectively, along with time information t x ;and means disposed at the base station (10,11) for calculating the position of said wireless transceiver (20,26) in response to said second set of pseudo ranges and said time information t x , wherein said means for calculating includes: means for determining a distance of said wireless transceiver (20,26) from said base station (10,11) based on a delay in receipt of the signal;and means for utilizing said distance in the calculation of the position of said wireless transceiver (20,26).
  3. 4
    A method of determining a position of a mobile wireless transceiver (20,26), the method comprising; calculating Doppler shift information including a Doppler shift of signals transmitted from first and second satellites (60,70,80,90), respectively, relative to a base station (10,11); calculating pseudo range information including a first set of pseudo ranges of the first and second satellites (60,70,80,90) respectively, relative to said base station (10,11); sending satellite identification information, said Doppler shift information, and said pseudo range information from said base station (10,11) to said wireless transceiver (20,26); receiving at said base station (10,11) a signal sent by said wireless transceiver (20,26), said signal containing a second set of pseudo ranges between said wireless transceiver and said first and second satellites and a time information t x ; calculating the position of said wireless transceiver (20,26) in response to the second set of pseudo ranges and the time information t x sent by said mobile wireless transceiver (20,26) to said base station (10,11), wherein said calculating includes:determining a distance of said wireless transceiver (20,26) from said base station (10,11) based on a delay in receipt of the signal;and utilizing said distance in the calculation of the position of said wireless transceiver (20,26).
  4. 5
    The method of Claim 4, wherein said calculating Doppler shift information includes calculating a Doppler shift of signals transmitted from a third satellite (60,70,80,90), relative to the base station (10,11).
  5. 6
    The method of Claim 4, including identifying two optimal positioning satellites (60,70,80,90).
  6. 7
    The method of Claim 4, further comprising:identifying, at the base station (10,11), the first and second satellites, the first and second satellites being Global Positioning System satellites.
  7. 8
    The method of Claim 4 or 7, including switching said wireless transceiver (20,26), from a first mode for effecting voice/data communication to a second mode for locating the position thereof.
  8. 9
    The method of Claim 4, wherein said calculating the position of said wireless transceiver (20,26) includes:utilizing said second set of pseudo ranges to calculate a third set of pseudo ranges between said first and second satellites (60,70,80,90) and said base station (10,11), respectively;and utilizing known positions of the two satellites (60,70,80,90) at time t x , the position of the base station (10,11), the third set of pseudo ranges and a delay in the time of arrival of a signal transmitted from the wireless transceiver (20,26) to the base station (10,11) to ascertain the position of said wireless transceiver (20,26).
  9. 10
    The method of Claim 4 or 9, wherein said calculating the position of the wireless transceiver (20,26), includes finding an intersection of a first sphere around a first of the satellites (60,70,80,90), a second sphere around a second of the satellites (60,70,80,90), and a third sphere around said base station (10,11).