IL166644A

Mobile communication system using position location information

Abstract

A method and apparatus for using information about a mobile terminal's location relative to a base station can improve performance of a communication system. In addition, information about the mobile terminal's velocity relative to the base station may be used to improve performance of the communication system. The location information may be used to estimate a nominal PN offset, and a set of PN offset to use, for processing communication signals. The velocity information may be used to estimate a nominal frequency of the communication signals.

IL166644A, drawing sheet 1
Sheet 1 of 7

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

26 claims: 2 independent, 24 dependent

  1. 1
    Claims A method of determining a search window for processing signals (112) in a wireless communications system, the metlnifocomprising:determining, at a mobile terminal (104), a distance (DI, D2) between the mobile terminal (104) and a base station (102) based on their respective locations;estimating a nominal PN offset (136,142) of signals (112) transmitted between the base station (102) and the mobile terminal (104) based on the distance (D1, D2) between the mobile terminal (104) and the base station (102);and determining a search window used for processing the received signals (112) based on the estimate of the nominal PN offset (136,142).
  2. 2
    A method as defined in Claim 1, wherein estimating a nominal PN offset (136,142) and determining a search window are performed in the base station (102).
  3. 3
    A method as defined in Claim 2, wherein the estimated nominal PN offset (136, 142) is transmitted from the base ר׳f ihg rrinhila
  4. 4
    A method as defined in Claim 2, wherein the search window is transmitted from the base station (102) to the mobile terminal (104).
  5. 5
    A method as defined in Claim 1, wherein estimating a nominal PN offset (136,142) and determining a search window are performed in the mobile terminal (104).
  6. 6
    A method as defined in Claim 5, wherein the signals (112) received at the mobile terminal (104) include a pilot signal (222).
  7. 7
    A method as defined in Claim 6, wherein the pilot signal (222) is encoded with a pseudorandom code (218).
  8. 8
    The method as defined in Claim 7, wherein different base station pilot signals (222) are distinguished by their unique PN offsets (136, 142). A mobile terminal (104) comprising:a receiver (302) configured to receive a communication signal (112) from a base station (102), means for determining a distance (D1, D2) between the mobile terminal (104) and the base station (102) based on their respective locations;a controller (306) configured to estimate a nominal PN offset (136,142) of the received communication signals (112) based on the distance (D1, D2) between the mobile terminal (104) and the base station (102), and to determine a search window in response to the distance (D1, □2) between the mobile terminal (104) and the base station (102);and a search engine (304) configured to accept the search window and to perform a search of the received communication signal (112) using the search window.
  9. 9
    10. A mobile terminal (104) as defined in Claim 9, further comprising:a location engine (308) configured to accept navigational information and to thereby determine a location (110, 120) of the mobile terminal (104).
  10. 10
    11. A mobile terminal (104) as defined in Claims 9 or 10, wherein the received communication signal or signals (112) comprises a pilot signal (222), base station (102) comprising:a receiver (312) configured to receive communication signals (112) from a mobile terminal (104);means for determining a distance (D1, D2) between the mobile terminal (104) and the base station (102) based on their respective locations;a controller (316) configured to estimate a nominal PN offset (218) of the received communication signals (112) based on the distance (D1, D2) between the mobile terminal (104) and the base station (102), and to determine a search window in response to the distance (D1, D2) between the mobile terminal (104) and the base station (102);and a search engine (314) configured to accept the search window and to perform a search of the received communication signal (112) using the search window.
  11. 11
    13. A base station (102) as defined in Claim 12, wherein the nominal PN offset (218) is transmitted from the base station (102) to the mobile terminal (104).
  12. 12
    14. A base station (102) as defined in Claim 12, wherein the search window is transmitted from the base station (102) to the mobile terminal (104).
  13. 13
    15. A base station (102) as defined in anyone of Claims 12 to 14, further comprising:a location engine (318) configured to accept navigational information and thereby determine a location (110, 120) of the mobile terminal (104). ^6j A mgthod^of determining a search window for processing signals in a wireless communications system, the method 0(ר1רז1חו־ Qincr r1p17arm1ninn. n יי . . 1• ז . . 4---1 ס«/»ס1י\י4׳ ׳ . ----------—r...©. '״****.־ umcuivu vwwcc״׳ ai icasi unc iiiuuuc terminal ana a oase station based on their respective locations;estimating a nominal PN offset of signals transmitted between the base station and the at least one mobile terminal based on the distance between the at least one mobile terminal and the base station;and determining a search window used for processing received signals based on the estimate of the nominal PN offset.