IP Library Granted Patent US 10,015,634
Granted Patent B2
US 10,015,634 · App. 15/256,676 · Granted Jul 3, 2018

Methods and apparatus for mobile station location estimation

Inventors: Alan Denis MacDonald (Bellevue, WA); Marc W. Sather (Kingston, WA); John Lawrence Snapp (Bellevue, WA)
Assignee: AT&T Mobility II LLC
H04W4/026G01S5/0252H04B17/318H04L43/16H04W4/22H04W64/00H04W64/003H04W88/14
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Quick Facts
Patent No.
US 10,015,634
App. No.
15/256,676
Granted
Jul 3, 2018
Kind
B2
Abstract

Methods and apparatus for estimating mobile station location include receiving reported signal strengths or other attachment indicator values from a mobile station. The reported signal strengths are compared with characteristic received signal strength values in a coverage area of a mobile network. A mobile switching center determines if a local function is requested and initiates a location estimation process by a mobile location module (MLM). The MLM receives the reported signal strength contours associated with the attachment points. Based on a comparison of the reported attachment indicator values with characteristic values, the MLM provides a mobile location estimate.

Claims (52)

1. A method comprising:

defining, by a mobile location apparatus comprising a processor, a first location zone based, at least in part, on a geographic coverage area of a cell serving a mobile communication device;

determining, by the mobile location apparatus, a second location zone associated with the mobile communication device, wherein the second location zone is determined based, at least in part, on a corresponding strength of signal associated with each of a plurality of cells measured by the mobile communication device, wherein the corresponding strength of signal associated with each of the plurality of cells measured by the mobile communication device is used to calculate a corresponding distance between the mobile communication device and a respective base station of each of the plurality of cells, and wherein the corresponding distance between the mobile communication device and the respective base station of each of the plurality of cells is used to determine the second location zone associated with the mobile communication device;

receiving, by the mobile location apparatus, from the mobile communication device, first coordinates of the mobile communication device calculated, at a first time period, by a global positioning system of the mobile communication device;

determining, by the mobile location apparatus, whether the first coordinates of the mobile communication device are within the first location zone;

in response to determining that the first coordinates of the mobile communication device are within the first location zone, determining, by the mobile location apparatus, whether the first coordinates of the mobile communication device are within the second location zone; and

in response to determining that the first coordinates of the mobile communication device are within the second location zone, associating, by the mobile location apparatus, the first coordinates of the mobile communication device with a high confidence level as being an estimate of a geographical location of the mobile communication device.

2. The method of claim 1 , further comprising providing, by the mobile location apparatus, the estimate of the geographical location of the mobile communication device to an emergency responder.

3. The method of claim 1 , further comprising providing, by the mobile location apparatus, the estimate of the geographical location of the mobile communication device to the mobile communication device for use with a mobile-assisted location service.

4. The method of claim 1 , further comprising receiving, by the mobile location apparatus, from the mobile communication device:

second coordinates calculated, at a second time period before the first time period, by the global positioning system of the mobile communication device;

error threshold values; and

peak error values associated with a plurality of coordinates of the mobile communication device calculated, over a plurality of time periods including the first time period, by the global positioning system of the mobile communication device, wherein the plurality of coordinates include the first coordinates.

5. The method of claim 4 , further comprising:

determining whether the peak error values associated with the plurality of coordinates of the mobile communication device are within the error threshold values;

in response to determining that the peak error values associated with the plurality of coordinates of the mobile communication device are within the error threshold values, then using the first coordinates to determine the estimate of the geographical location of the mobile communication device; and

in response to determining that the peak error values associated with the plurality of coordinates of the mobile communication device are not within the error threshold values, then using the second coordinates to determine the estimate of the geographical location of the mobile communication device.

6. A mobile location apparatus comprising:

a processor; and

a memory that stores instructions that, when executed by the processor, cause the processor to perform operations comprising

defining a first location zone based, at least in part, on a geographic coverage area of a cell serving a mobile communication device,

determining a second location zone associated with the mobile communication device, wherein the second location zone is determined based, at least in part, on a corresponding strength of signal associated with each of a plurality of cells measured by the mobile communication device, wherein the corresponding strength of signal associated with each of the plurality of cells measured by the mobile communication device is used to calculate a corresponding distance between the mobile communication device and a respective base station of each of the plurality of cells, and wherein the corresponding distance between the mobile communication device and the respective base station of each of the plurality of cells is used to determine the second location zone associated with the mobile communication device,

receiving, from the mobile communication device, first coordinates of the mobile communication device calculated, at a first time period, by a global positioning system of the mobile communication device,

determining whether the first coordinates of the mobile communication device are within the first location zone,

in response to determining that the first coordinates of the mobile communication device are within the first location zone, determining whether the first coordinates of the mobile communication device are within the second location zone, and

in response to determining that the first coordinates of the mobile communication device are within the second location zone, associating the first coordinates of the mobile communication device with a high confidence level as being an estimate of a geographical location of the mobile communication device.

7. The mobile location apparatus of claim 6 , wherein the operations further comprise providing the estimate of the geographical location of the mobile communication device to an emergency responder.

8. The mobile location apparatus of claim 6 , wherein the operations further comprise providing the estimate of the geographical location of the mobile communication device to the mobile communication device for use with a mobile-assisted location service.

9. The mobile location apparatus of claim 6 , wherein the operations further comprise receiving, from the mobile communication device:

second coordinates calculated, at a second time period before the first time period, by the global positioning system of the mobile communication device;

error threshold values; and

peak error values associated with a plurality of coordinates of the mobile communication device calculated, over a plurality of time periods including the first time period, by the global positioning system of the mobile communication device, wherein the plurality of coordinates include the first coordinates.

10. The mobile location apparatus of claim 9 , wherein the operations further comprise:

determining whether the peak error values associated with the plurality of coordinates of the mobile communication device are within the error threshold values;

in response to determining that the peak error values associated with the plurality of coordinates of the mobile communication device are within the error threshold values, then using the first coordinates to determine the estimate of the geographical location of the mobile communication device; and

in response to determining that the peak error values associated with the plurality of coordinates of the mobile communication device are not within the error threshold values, then using the second coordinates to determine the estimate of the geographical location of the mobile communication device.

11. A non-transitory computer readable medium storing instructions that, when executed by a processor of a mobile location apparatus, cause the processor to perform operations comprising:

defining a first location zone based, at least in part, on a geographic coverage area of a cell serving a mobile communication device;

determining a second location zone associated with the mobile communication device, wherein the second location zone is determined based, at least in part, on a corresponding strength of signal associated with each of a plurality of cells measured by the mobile communication device, wherein the corresponding strength of signal associated with each of the plurality of cells measured by the mobile communication device is used to calculate a corresponding distance between the mobile communication device and a respective base station of each of the plurality of cells, and wherein the corresponding distance between the mobile communication device and the respective base station of each of the plurality of cells is used to determine the second location zone associated with the mobile communication device;

receiving, from the mobile communication device, first coordinates of the mobile communication device calculated, at a first time period, by a global positioning system of the mobile communication device;

determining whether the first coordinates of the mobile communication device are within the first location zone;

in response to determining that the first coordinates of the mobile communication device are within the first location zone, determining whether the first coordinates of the mobile communication device are within the second location zone; and

in response to determining that the first coordinates of the mobile communication device are within the second location zone, associating the first coordinates of the mobile communication device with a high confidence level as being an estimate of a geographical location of the mobile communication device.

12. The non-transitory computer readable medium of claim 11 , wherein the operations further comprise providing the estimate of the geographical location of the mobile communication device to the mobile communication device for use with a mobile-assisted location service.

13. The non-transitory computer readable medium of claim 11 , wherein the operations further comprise receiving, from the mobile communication device:

second coordinates calculated, at a second time period before the first time period, by the global positioning system of the mobile communication device;

error threshold values; and

peak error values associated with a plurality of coordinates of the mobile communication device calculated, over a plurality of time periods including the first time period, by the global positioning system of the mobile communication device, wherein the plurality of coordinates include the first coordinates.

14. The non-transitory computer readable medium of claim 13 , wherein the operations further comprise:

determining whether the peak error values associated with the plurality of coordinates of the mobile communication device are within the error threshold values;

in response to determining that the peak error values associated with the plurality of coordinates of the mobile communication device are within the error threshold values, then using the first coordinates to determine the estimate of the geographical location of the mobile communication device; and

in response to determining that the peak error values associated with the plurality of coordinates of the mobile communication device are not within the error threshold values, then using the second coordinates to determine the estimate of the geographical location of the mobile communication device.

Assignments (6)
CERTIFICATE OF CONVERSION Recorded Sep 9, 2016
From: CINGULAR WIRELESS II, INC.
To: CINGULAR WIRELESS II, LLC
Reel/Frame 039972/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2016
From: MACDONALD, ALAN D.; SATHER, MARC W.; SNAPP, JOHN L.
To: AT&T WIRELESS SERVICES, INC.
Reel/Frame 039633/0104 →
CHANGE OF NAME Recorded Sep 6, 2016
From: AT&T WIRELESS SERVICES, INC.
To: NEW CINGULAR WIRELESS SERVICES, INC.
Reel/Frame 039917/0702 →
CHANGE OF NAME Recorded Sep 6, 2016
From: CINGULAR WIRELESS II, LLC
To: AT&T MOBILITY II, LLC
Reel/Frame 039917/0740 →
CHANGE OF NAME Recorded Sep 6, 2016
From: AT&T MOBILITY II, LLC
To: AT&T MOBILITY II LLC
Reel/Frame 039917/0745 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2016
From: NEW CINGULAR WIRELESS SERVICES, INC.
To: CINGULAR WIRELESS II, INC.
Reel/Frame 039917/0751 →
Continuity (7)
Continuation 14217571 · Mar 18, 2014
Continuation 13691031 · Nov 30, 2012
Continuation 13334341 · Dec 22, 2011
Continuation 12396372 · Mar 2, 2009
Continuation 10473926
Provisional Application 60281147 · Apr 3, 2001
Related Publication 20170006427A1 · Jan 5, 2017