IP Library Granted Patent US 9,571,963
Granted Patent B2
US 9,571,963 · App. 14/754,992 · Granted Feb 14, 2017

Positioning with wireless local area networks and WLAN-aided global positioning systems

Inventor: Yi-Hsiu Wang (Palo Alto, CA)
Assignee: QUALCOMM Incorporated
H04W4/02G01S5/14G01S19/05G01S19/06G01S19/252G01S19/29G01S19/48H04W64/00G01S5/12G01S19/28H04W84/12H04W88/08
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Quick Facts
Patent No.
US 9,571,963
App. No.
14/754,992
Granted
Feb 14, 2017
Kind
B2
Abstract

Accurate position capability can be quickly provided using a Wireless Local Area Network (WLAN). When associated with a WLAN, a wireless device can quickly determine its relative and/or coordinate position based on information provided by an access point in the WLAN. Before a wireless device disassociates with the access point, the WLAN can periodically provide time, location, and decoded GPS data to the wireless device. In this manner, the wireless device can significantly reduce the time to acquire the necessary GPS satellite data (i.e. on the order of seconds instead of minutes) to determine its coordinate position.

Claims (39)

1. A method comprising:

determining a location of a wireless device in a communications system based on location information received from one or more access points, wherein the location information includes a position associated with at least one of the one or more access points, a current time and GPS almanac data; and

acquiring a satellite positioning system signal at the wireless device based at least in part on the determined location.

2. The method of claim 1 , further including providing the location information from a server of the communications system to the at least one of the one or more access points.

3. The method of claim 1 , further including using the acquired satellite positioning system signal to generate a modified location of the wireless device.

4. The method of claim 1 , further including periodically receiving the location information from the one or more access points with the wireless device.

5. The method of claim 1 , further including identifying a first satellite having a highest elevation angle with respect to the wireless device based on the received location information.

6. The method of claim 5 , further comprising acquiring the satellite positioning system signal from the first satellite.

7. The method of claim 6 , further including using multiple correlators of the wireless device in parallel to acquire the satellite positioning system signal from the first satellite, wherein the multiple correlators have different time and/or frequency offsets.

8. The method of claim 6 , further including using multiple pairs of correlators of the wireless device in parallel to acquire the satellite positioning system signal from the first satellite, wherein each pair of correlators includes an in-phase correlator and a quadrature-phase correlator.

9. The method of claim 6 , further comprising:

determining a time offset and a frequency offset associated with the satellite positioning system signal acquired from the first satellite; and

using the time offset and the frequency offset to derive time offsets and frequency offsets of other satellites.

10. A method comprising:

determining a location of a wireless device in a communications system based on location information received from one or more access points, wherein the location information includes a position associated with at least one of the one or more access points;

identifying a first satellite having a highest elevation angle with respect to the wireless device based on the received location information;

acquiring the satellite positioning system signal from the first satellite at the wireless device based at least in part on the determined location; and

determining a frequency offset associated with the satellite positioning signal acquired from the first satellite by:

approximating a Doppler effect of the first satellite to be zero; and

specifying the frequency offset as a difference between an oscillator frequency of the first satellite and a receiver frequency of the wireless device.

11. The method of claim 5 , wherein identifying the first satellite is further based on a current time.

12. A wireless device comprising:

means for determining a location of a wireless device in a communications system based on location information received from one or more access points, wherein the location information includes a position associated with at least one of the one or more access points;

means for acquiring a satellite positioning system signal at the wireless device based at least in part on the determined location; and

means for using the acquired satellite positioning system signal to generate a modified location of the wireless device.

13. The wireless device of claim 12 , further including means for storing the location information for use by the wireless device.

14. The wireless device of claim 12 , further including means for periodically receiving the location information from the one or more access points.

15. The wireless device of claim 12 , further including means for identifying a first satellite having a highest elevation angle with respect to the wireless device based on the received location information.

16. The wireless device of claim 15 , wherein the means for acquiring the satellite positioning system signal includes means for acquiring the satellite positioning system signal from the first satellite.

17. The wireless device of claim 15 , further including multiple correlators configured to operate in parallel to acquire the satellite positioning system signal from the first satellite, wherein the multiple correlators have different time and/or frequency offsets.

18. The wireless device of claim 15 , further including multiple pairs of correlators configured to operate in parallel to acquire the satellite positioning system signal from the first satellite, wherein each pair of correlators includes an in-phase correlator and a quadrature-phase correlator.

19. The wireless device of claim 15 , further including:

means for determining a time offset and a frequency offset associated with the satellite positioning system signal acquired from the first satellite; and

means for using the time offset and the frequency offset to derive time offsets and frequency offsets of other satellites.

20. A wireless device comprising:

means for determining a location of a wireless device in a communications system based on location information received from one or more access points, wherein the location information includes a position associated with at least one of the one or more access points;

means for acquiring a satellite positioning system signal at the wireless device based at least in part on the determined location;

means for identifying a first satellite having a highest elevation angle with respect to the wireless device based on the received location information; and

means for determining a frequency offset associated with the satellite positioning signal acquired from the first satellite by: approximating a Doppler effect of the first satellite to be zero, and specifying the frequency offset as a difference between an oscillator frequency of the first satellite and a receiver frequency of the wireless device.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2015
From: WANG, YI-HSIU
To: ATHEROS COMMUNICATIONS, INC.
Reel/Frame 036353/0112 →
MERGER Recorded Aug 18, 2015
From: ATHEROS COMMUNICATIONS, INC.
To: QUALCOMM ATHEROS, INC.
Reel/Frame 036353/0117 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2015
From: QUALCOMM ATHEROS, INC.
To: QUALCOMM INCORPORATED
Reel/Frame 036389/0431 →
Continuity (6)
Continuation 14070439 · Nov 1, 2013
Division 13309537 · Dec 1, 2011
Division 12904085 · Oct 13, 2010
Division 11461335 · Jul 31, 2006
Continuation 10367524 · Feb 14, 2003
Related Publication 20150304811A1 · Oct 22, 2015