Mobile station apparatus, integrated circuit, communication method, and communication program
US-2015257114-A1 · Sep 10, 2015 · US
US9668274B1 · US · B1
| Field | Value |
|---|---|
| Publication number | US-9668274-B1 |
| Application number | US-201414193816-A |
| Country | US |
| Kind code | B1 |
| Filing date | Feb 28, 2014 |
| Priority date | Feb 28, 2014 |
| Publication date | May 30, 2017 |
| Grant date | May 30, 2017 |
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Official abstract text for this publication.
A method, system, and medium are provide for dynamically allocating frequency bands transmitted by a base station to a user device to optimize signal strength at the device. A distance from the base station to the user device is determined, and if the distance is greater than a distance threshold, a lower-frequency band is allocated to the device. If the distance is less than the distance threshold, a penetration loss factor for the device is calculated. If the penetration loss factor is greater than a penetration loss threshold, a lower-frequency band is allocated to the device, and if the penetration loss factor is less than the penetration loss threshold, a higher-frequency band is allocated to the device.
Opening claim text (preview).
What is claimed is: 1. One or more non-transitory computer-readable media having computer executable instructions embodied thereon that, when executed, perform a method of dynamically allocating frequency bands transmitted by a base station to a user device to optimize signal strength at the user device, the method comprising: determining a distance from the base station to the user device, wherein determining the distance from the base station to the user device comprises: 1) measuring a time-offset from the user device's signal to a GPS-based time associated with the base station, and 2) based on the time-offset, determining the distance the user device is located from the base station; and determining if the distance is greater than or less than a predefined distance threshold, wherein: when the distance is less than the predefined distance threshold: calculating a penetration loss factor for the user device, wherein when the penetration loss factor is above a predefined penetration loss threshold, allocating a lower-frequency band to the user device, and wherein when the penetration loss factor is below the predefined penetration loss threshold, allocating a higher-frequency band to the user device; and when the distance is greater than the predefined distance threshold, allocating the lower-frequency band to the user device. 2. The media of claim 1 , wherein the predefined distance threshold is particular to the base station. 3. The media of claim 1 , wherein the predefined distance threshold is adjustable. 4. The media of claim 3 , wherein the predefined distance threshold is adjusted upward during periods when the base station has high subscriber use. 5. The media of claim 3 , wherein the predefined distance threshold is adjusted downward during periods when the base station has low subscriber use. 6. The media of claim 1 , wherein the predefined penetration loss threshold is particular to the base station. 7. The media of claim 1 , wherein the predefined penetration loss threshold is adjustable. 8. The media of claim 7 , wherein the predefined penetration loss threshold is adjusted upward during periods of time when the base station has high subscriber use. 9. The media of claim 7 , wherein the predefined penetration loss threshold is adjusted downward during periods of time when the base station has low subscriber use. 10. The media of claim 1 , wherein the lower-frequency band comprises an 800 MHz band. 11. The media of claim 1 , wherein the higher-frequency band comprises a 1900 MHz band. 12. A computerized method carried out by at least one server having at least one processor for dynamically allocating frequency bands transmitted by a base station to a user device to optimize signal strength at the user device, the method comprising: determining that a distance from the base station to the user device is less than a predefined distance threshold, wherein the distance from the base station to the user device is determined by: 1) measuring a time-offset from the user device's signal to a GPS-based time associated with the base station, and 2) based on the time-offset, determining the distance the user device is located from the base station; calculating a penetration loss factor for the user device; determining, using the at least one processor, if the penetration loss factor is greater than or less than a predefined penetration loss threshold, wherein: when the penetration loss factor is greater than the predefined penetration loss threshold, allocating a lower-frequency band to the user device, and when the penetration loss factor is less than the predefined penetration loss threshold, allocating a higher-frequency band to the user device. 13. The computerized method of claim 12 , wherein the penetration loss factor is calculated subsequent to determining that the distance from the user device to the base station is less than the predefined distance threshold. 14. The computerized method of claim 13 , further comprising: when the penetration loss factor is less than the predefined penetration loss threshold, monitoring the penetration loss factor for the user device; determining that the penetration loss factor for the user device has increased such that the penetration loss factor is now greater than the predefined penetration loss threshold; instituting a predefined time delay; and allocating the lower-frequency band to the user device after the predefined time delay has expired. 15. The computerized method of claim 13 , further comprising: when the penetration loss factor is greater than the predefined penetration loss threshold, monitoring the penetration loss factor for the user device; determining that the penetration loss factor for the user device has decreased such that the penetration loss factor is now less than the predefined penetration loss threshold; instituting a predefined time delay; and allocating the higher-frequency band to the user device after the predefined time delay has expired. 16. The computerized method of claim 12 , wherein the predefined penetration loss threshold is adjusted based on at least one of time of day or day of the week. 17. The computerized method of claim 12 , wherein the predefined penetration loss threshold is adjusted based on data speeds at the user device. 18. A system for dynamically allocating frequency bands transmitted by a base station to a user device to optimize signal strength at the user device, the system comprising: a computing device associated with the base station having one or more processors and one or more computer-readable media; and a data store coupled with the base station, wherein the computing device: determines a distance from the user device to the base station, wherein determining the distance from the base station to the user device comprises: 1) measuring a time-offset from the user device's signal to a GPS-based time associated with the base station, and 2) based on the time-offset, determining the distance the user device is located from the base station; determines if the distance is greater than or less than a predefined distance threshold, wherein: when the distance is greater than the predefined distance threshold, allocates a lower-frequency band to the user device; and when the distance is less than the predefined distance threshold, allocates a higher-frequency band to the user device. 19. The system of claim 18 , wherein when the distance is less than the predefined distance threshold, the computing device further: calculates a penetration loss factor for the user device, wherein: when the penetration loss factor is above a predefined penetration loss threshold, allocates the lower-frequency band to the user device, and wherein when the penetration loss factor is below the predefined penetration loss threshold, continues to allocate the higher-frequency band to the user device. 20. The system of claim 18 , wherein the predefined distance threshold is adjustable based on at least one of subscriber usage of the lower-frequency band or subscriber usage of the higher-frequency band.
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