IP Library Granted Patent US 9,002,355
Granted Patent B2
US 9,002,355 · App. 13/314,004 · Granted Apr 7, 2015

Method for categorization of multiple providers in a wireless communication service environment

Inventors: Michael D. Bamburak (Columbia, MD); John J. Daly (Neshanic Station, NJ); Christopher Gregory Lawrence (Kirkland, WA); Michael Edward Prise (Kirkland, WA); Michael Allen Raffel (Redmond, WA)
Assignee: AT&T Mobility LLC
H04W48/18H04W48/16H04W88/06
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Quick Facts
Patent No.
US 9,002,355
App. No.
13/314,004
Granted
Apr 7, 2015
Kind
B2
Abstract

A communication device locates a preferable wireless service provider in a multi-service provider environment using a frequency band search schedule. Initially, the communications device registers with a less preferred service provider in a first frequency band. While remaining registered with the less preferred service provider, the device examines several frequency bands in the order specified by the frequency band search schedule. A frequency band is examined by dividing the frequency band into many sub-bands, and by locating the strongest signal above a threshold within the sub-band being examined. The examination continues until a second frequency band having a more preferred service provider is located. The communication device then registers with the more preferred service provider. The category of service provider may be identified and displayed on the communication device.

Claims (29)

1. A method by which a wireless communication device locates a wireless service provider of a plurality of wireless service providers, comprising:

storing, by the wireless communication device, a frequency search schedule, wherein the frequency search schedule comprising a plurality of frequency bands in an order, wherin the order is based upon time-weighted counts of previous registrations of the wireless communication device with a respective wireless service provider of the plurality of wireless service providers operating within each of the plurality of frequency bands, wherein the storing comprises:

storing, by the wireless communication device, a plurality of counters representing the time-weighted counts of the previous registrations with each frequency band of the plurality of frequency bands;

incrementing, by the wireless communication device, a counter of the plurality of counters corresponding to a frequency band of the plurality of frequency bands upon a registration with any wireless service provider within the frequency band; and

adjusting, by the wireless communication device, the counter by a time-weighting factor to produce a time-weighted count corresponding to the frequency band; and

examining, by the wireless communication device, the plurality of frequency bands until a service provider control channel of the respective wireless service provider is located within one of the plurality of frequency bands by examining the plurality of frequency bands in the order specified by the frequency search schedule.

2. The method of claim 1 , further comprising:

modifying the frequency search schedule using information transmitted over a wireless interface.

3. The method of claim 1 , wherein the examining the plurality of frequency bands comprises first examining a frequency band that had carried communications of a wireless service provider last used by the wireless communication device, if the wireless service provider last used by the wireless communication device was an optimal wireless service provider.

4. An apparatus for locating a wireless service provider of a plurality of wireless service providers, comprising:

a processor of a wireless communication device; and

a computer-readable medium storing instructions which, when executed by the processor, cause the processor to perform operations, the operations comprising:

storing a frequency search schedule, wherein the frequency search schedule comprising a plurality of frequency bands in an order, wherein the order is based upon time-weighted counts of previous registrations of the wireless communication device with a respective wireless service provider of the plurality of wireless service providers operating within each of the plurality of frequency bands, wherein the storing comprises:

storing a plurality of counters representing the time-weighted counts of the previous registrations with each frequency band of the plurality of frequency bands;

incrementing a counter of the plurality of counters corresponding to a frequency band of the plurality of frequency bands upon a registration with any wireless service provider within the frequency band; and

adjusting the counter by a time-weighting factor to produce a time-weighted count corresponding to the frequency band; and

examining the plurality of frequency bands until a service provider control channel of the respective wireless service provider is located within one of the plurality of frequency bands by examining the plurality of frequency bands in the order specified by the frequency search schedule.

5. The apparatus of claim 4 , wherein the operations further comprise:

modifying the frequency search schedule using information transmitted over a wireless interface.

6. The apparatus of claim 4 , wherein the examining the plurality of frequency bands comprises first examining a frequency band that had carried communications of a wireless service provider last used by the wireless communication device, if the wireless service provider last used by the wireless communication device was an optimal wireless service provider.

7. A tangible computer-readable medium storing instructions which, when executed by a processor of a wireless communication device, cause the processor to perform operations by which the wireless communication device locates a wireless service provider of a plurality of wireless service providers, the operations comprising:

storing a frequency search schedule, wherein the frequency search schedule comprises a plurality of frequency bands in an order, wherein the order is based upon time-weighted counts of previous registrations of the wireless communication device with a respective wireless service provider of the plurality of wireless service providers operating within each of the plurality of frequency bands, wherein the storing comprises:

storing a plurality of counter representing the time-weighted counts of the previous registrations with each frequency band of the plurality of frequency bands;

incrementing a counter of the plurality of counters corresponding to a frequency band of the plurality of frequency bands upon a registration with any wireless service provider within the frequency band; and

adjusting the counter by a time-weighting factor to produce a time-weighted count corresponding to the frequency band; and

examining the plurality of frequency bands until a service provider control channel of the respective wireless service provider is located within one of the plurality of frequency bands by examining the plurality of frequency bands in the order specified by the frequency search schedule.

8. The tangible computer-readable medium of claim 7 , wherein the operations further comprise:

modifying the frequency search schedule using information transmitted over a wireless interface.

9. The tangible computer-readable medium of claim 7 , wherein the examining the plurality of frequency bands comprises first examining a frequency band that had carried communications of a wireless service provider last used by the wireless communication device, if the wireless service provider last used by the wireless communication device was an optimal wireless service provider.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2012
From: BAMBURAK, MICHAEL D.; DALY, JOHN J.; LAWRENCE, CHRISTOPHER GREGORY; PRISE, MICHAEL EDWARD; RAFFEL, MICHAEL ALLEN
To: AT&T WIRELESS SERVICES, INC.
Reel/Frame 027523/0451 →
Continuity (7)
Continuation 12647738 · Dec 28, 2009
Continuation 12186358 · Aug 5, 2008
Continuation 10949313 · Sep 27, 2004
Continuation 10099992 · Mar 19, 2002
Continuation 09332499 · Jun 14, 1999
Continuation 08672908 · Jun 28, 1996
Related Publication 20120077492A1 · Mar 29, 2012