Claims
- 1. An uplink power control method for a wireless communication system, comprising:
calculating a power control parameter in accordance with a selected modulation and coding scheme and in accordance with link quality measurements observed during a measurement interval; and determining mobile station transmit power to use in transmitting a current uplink data block based on the power control parameter.
- 2. The method of claim 1, wherein the wireless communication system is part of an enhanced general packet radio service (EGPRS) system.
- 3. The method of claim 2,
wherein the power control parameter is sent to a mobile station to inform the mobile station of the transmit power it should use to transmit the current data block.
- 4. The method of claim 1, wherein one of the link quality measurements is representative of a bit error probability (BEP).
- 5. The method of claim 4, wherein the BEP is a mean BEP observed during the measurement interval.
- 6. The method of claim 5, wherein said step of determining further includes calculating a power control amount based on said observed mean BEP uplink temporary block flow (TBF) on a timeslot s for each mobile station, the power control amount representing an excess transmit power being used by the mobile.
- 7. The method of claim 1,
wherein if said determining step results in an increase in mobile station transmit power, the mobile station increases transmit power by a power increase amount equal to a gain factor times an estimated power control amount, and wherein if said determining step results in decrease in mobile station transmit power, the mobile station decreases transmit power by a power reduction amount equal to a gain factor times an estimated power control amount.
- 8. The method of claim 7, wherein the method prevents the power reduction and power increase amounts from exceeding a predetermined value during each measurement interval.
- 9. The method of claim 1, further comprising transmitting the current uplink data block at the determined transmit power.
- 10. The method of claim 1, wherein the method is initiated by at least one external event.
- 11. The method of claim 10, wherein the external event is selected from a group comprising at least temporary block flows (TBF), receipt of an uplink block of data, transmission of a packet uplink acknowledgement/negative acknowledgement message, transmission of a TBF reassignment message, and termination of a TBF.
- 12. The method of claim 1, further comprising:
caching, at an end of a first downlink communication flow with a mobile station, the selected modulation and coding scheme; retrieving the cached modulation and coding scheme when a second downlink communication flow is being established with the mobile station; and changing the retrieved modulation and coding scheme to a stronger modulation and coding scheme based on an amount of time between the end of the first downlink communication flow and the beginning of the second downlink communication flow.
- 13. The method of claim 1, further comprising:
changing the selected modulation and coding scheme based on power control being performed by the method.
- 14. A base station of a wireless communication system, comprising:
a transceiver for transmitting and receiving data packets to and from one or more mobile stations; and a processor which calculates a power control parameter in accordance with a modulation and coding scheme and in accordance with link quality measurements observed during a measurement interval in order to determine what transmit power a mobile station should be using to transmit a current uplink data block.
- 15. The base station of claim 14, wherein said processor includes a power control application that calculates the power control parameter.
- 16. The base station of claim 15, wherein the power control application is initiated by at least one external event.
- 17. The base transmitter station of claim 16, wherein the external event is selected from the group comprising at least temporary block flows (TBF), receipt of an uplink block of data, transmission of a packet uplink acknowledgement/negative acknowledgement message, transmission of a TBF reassignment message, and termination of a TBF.
- 18. The base station of claim 15, wherein said power control application uses a bit error probability (BEP) in order to calculate the power control parameter.
- 19. The base station of claim 18, wherein the BEP is a mean BEP observed during the measurement interval.
- 20. The base station of claim 14, wherein said processor calculates a power control amount based on said observed mean BEP uplink temporary block flow (TBF) on a timeslot s for each mobile station, the power control amount representing an excess transmit power being used by the mobile.
- 21. The base station of claim 14,
wherein if the processor determines that an increase in mobile transmit power is required, the mobile station increases transmit power by a power increase amount equal to a gain factor times an estimated power control amount, and wherein if the processor determines that a decrease in mobile transmit power is required, the mobile station decreases transmit power by a power reduction amount equal to a gain factor times an estimated power control amount.
- 22. The base station of claim 21, wherein the power reduction and power increase amounts do not exceed a predetermined value during each measurement interval.
- 23. The base station of claim 14, wherein the mobile station transmits a current data block at the determined transmit power.
- 24. The base station of claim 14, wherein the wireless communication system is an enhanced general packet radio system (EGPRS).
- 25. In a wireless communication system, an uplink power control method requiring interaction between a first algorithm and a second algorithm,
wherein the first algorithm informs the second algorithm about a modulation and a coding scheme that is to be used over an airlink, in a next measurement interval, and wherein the second algorithm calculates a power control parameter based on the received modulation and coding scheme.
- 26. The system of claim 25, wherein the airlink is provided between at least one target mobile station and a base station of the system
- 27. The system of claim 26, wherein the power control parameter is sent to said at least one target mobile station to inform said target mobile station of the transmit power it should use to transmit a current message.
- 28. The system of claim 25, wherein the second algorithm selects bit error rate (BER) or carrier-to-interference level (C/I) for the target mobile station, and then sets a variable when attenuation to be used in said next measurement interval exceeds a preset threshold.
- 29. The system of claim 28, wherein said set variable is a revised modulation and coding scheme used to calculate the power control parameter.
- 30. The system of claim 29, wherein the power control parameter is sent to at least one target mobile station to inform said target mobile station of the transmit power it should use to transmit a current uplink block of data.
- 31. The system of claim 25, wherein the first algorithm is an uplink link adaptation algorithm and the second algorithm is a closed-loop uplink power control algorithm.
- 32. The system of claim 25, wherein a bit error probability (BEP) is used in calculating said control parameter.
CROSS REFERENCE TO RELATED CASES
[0001] The present invention is related to U.S. patent application Ser. No. 09/989,335 of Kenneth C. BUDKA et al., entitled “UPLINK POWER CONTROL ALGORITHM,” filed on Nov. 20, 2001, the entire contents of which is incorporated by reference herein.