Identity authentication method, electronic device, and computer-readable storage medium
US-2023344635-A1 · Oct 26, 2023 · US
US11943718B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11943718-B2 |
| Application number | US-202117564613-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 29, 2021 |
| Priority date | Sep 30, 2021 |
| Publication date | Mar 26, 2024 |
| Grant date | Mar 26, 2024 |
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A system and method for managing and controlling power of base station when a connectable terminal device is moving at speed through the coverage area of the base station, the method obtains a transmission power from a terminal through the base station; obtains location of the terminal, and generates a transmission power conversion table according to the terminal transmission power and the terminal location. The transmission power conversion table is transmitted to the terminal by the base station, the transmission power being used by the terminal according to the transmission power conversion table, avoiding repeated communications and electrical energy cost between base station and terminal in respect of the changing location of the terminal.
Opening claim text (preview).
What is claimed is: 1. A power control system comprising: a terminal; and a base station connecting to the terminal, obtaining a transmit power from the terminal, and obtaining a location information from the terminal; wherein the base station generates a transmission power conversion table according to the transmit power and the location information, and transmits the transmission power conversion table to the terminal; and wherein the terminal adjusts the transmit power according to the transmission power conversion table. 2. The power control system of claim 1 , wherein: the terminal sets at least two levels of the transmit power according to the transmission power conversion table and a distance between the terminal and the base station. 3. The power control system of claim 2 , wherein: the terminal adjusts the level of the transmit power of the terminal according to the transmission power conversion table and the location information within an interval period. 4. The power control system of claim 3 , wherein: the base station maintains the transmission power conversion table within the interval period, and sets the interval period according to a timer. 5. The power control system of claim 4 , wherein: the base station renews the transmission power conversion table after the interval period; the base station sends the renewed transmission power conversion table to the terminal. 6. The power control system of claim 3 , wherein: the terminal obtains the displaced information of the terminal, obtains the location information of the terminal according to the displaced information, and obtains the level of the transmit power according to the location information. 7. The power control system of claim 6 , wherein: the terminal selects the level of the transmit power with a higher power when obtaining two levels of the transmit power. 8. The power control system of claim 2 , wherein: the base station sets the level of the transmit power according to the distance between the terminal and the base station; and wherein, the power of the level of the transmit power is proportional to the distance between the terminal and the base station. 9. The power control system of claim 2 , wherein: the base station divides a signal coverage of the base station into three signal regions. 10. The power control system of claim 9 , wherein a shape of each of the three signal regions is ellipse. 11. A power control method applicable to a power control system, the power control method comprising: obtaining a transmit power from a terminal through a base station; obtaining a location information from the terminal through the base station; generating a transmission power conversion table according to the transmit power and the location information through the base station; transmitting the transmission power conversion table to the terminal through the base station; and adjusting the transmit power according to the transmission power conversion table through the terminal. 12. The power control method of claim 11 , further comprising: setting at least two levels of the transmit power according to the transmission power conversion table and a distance between the terminal and the base station through the terminal. 13. The power control method of claim 12 , further comprises: adjusting the level of the transmit power of the terminal according to the transmission power conversion table and the location information within an interval period through the terminal. 14. The power control method of claim 13 , further comprises: maintaining the transmission power conversion table within the interval period, and setting the interval period according to a timer through the base station. 15. The power control method of claim 14 , further comprises: renewing the transmission power conversion table after the interval period through the base station; sending the renewed transmission power conversion table to the terminal. 16. The power control method of claim 13 , further comprises: obtaining the displaced information of the terminal through the terminal; obtaining the location information of the terminal according to the displaced information through the base station; obtaining the level of the transmit power according to the location information through the terminal. 17. The power control method of claim 16 , further comprises: selecting the level of the transmit power with a higher power when obtaining two levels of the transmit power through the terminal. 18. The power control method of claim 12 , further comprises: setting the level of the transmit power according to the distance between the terminal and the base station through the base station; wherein, the power of the level of the transmit power is proportional to the distance between the terminal and the base station. 19. The power control method of claim 12 , further comprises: dividing a signal coverage of the base station into three signal regions through the base station. 20. The power control method of claim 19 , wherein a shape of each of the three signal regions is ellipse.
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