Claims
- 1. A method of determining transmitted power control commands at a receiver, the method comprising the step of defining a first decision region of a symbol space associated with a first power control command at the receiver and a second decision region of the symbol space associated with a second power control command at the receiver, the first and second regions being asymmetric with one another.
- 2. A method according to claim 1 further comprising the steps of:
receiving a transmitted power control command at a receiver to provide a received symbol; determining whether the received symbol maps to the first decision region or to the second decision region; interpreting the received symbol as the first power control command if the received symbol maps to the first decision region; and interpreting the received symbol as the second power control command if the received symbol maps to the second decision region.
- 3. A method according to claim 1 further comprising the step of:
redefining the first and second asymmetric regions of the symbol space based on one or more of a number of transmitters used to transmit a command to the receiver, a velocity associated with the receiver, an interference associated with the receiver, a frequency error between at least one of the transmitters and the receiver, a pilot sequence received at the receiver or a parameter associated with transmission power that affects reliability of power control commands.
- 4. A method according to claim 1 wherein the first decision region includes a greater portion of the symbol space than the second decision region to provide a bias to interpret the received power control command as the first power control command rather than the second power control command.
- 5. A method according to claim 1, wherein the receiver comprises a spread spectrum mobile user terminal, and a transmitter used to transmit the power control command to the spread spectrum mobile user terminal comprises a base station, wherein the first power control command comprises a first TPC command from the base station to increase a transmit power of the spread spectrum mobile user terminal and the second power control command comprises a second TPC command from the base station to decrease the transmit power of the spread spectrum mobile user terminal.
- 6. A method according to claim 5 wherein the TPC commands are included in a dedicated physical channel associated with the mobile user terminal operating in a wideband code division multiple access communications system.
- 7. A method according to claim 2 wherein the step of receiving further comprises receiving the transmitted power control command using frequency error information to compensate for a difference in a transmitter frequency used to transmit the power control command and a receiver frequency.
- 8. A method according to claim 7 wherein the frequency error information comprises a frequency error estimate based on information included in an Automatic Frequency Control (AFC) block of a communication channel received by the receiver.
- 9. A method according to claim 7 wherein a plurality of transmitters transmit at least one power control command to the receiver, wherein the step of receiving further comprises receiving the at least one power control command using a plurality of frequency error information associated with the plurality of transmitters.
- 10. A method according to claim 7 wherein a plurality of transmitters transmit at least one power control command to the receiver, wherein the frequency error information comprises an average of frequency error information associated with the plurality of transmitters.
- 11. A method according to claim 1:wherein the symbol space comprises a representation of an IQ coordinate system; and wherein the first decision region includes more than one half of the IQ coordinate system and the second decision region includes less than one half.
- 12. A receiver comprising a circuit configured to receive transmitted power control commands and provide received symbols for mapping to a symbol space defined to include a first decision region of the symbol space associated with a first power control command received at the receiver and a second decision region of the symbol space associated with a second power control command received at the receiver, the first and second regions being asymmetric with one another.
- 13. A receiver according to claim 12 wherein the circuit is further configured to determining whether the received symbol maps to the first decision region or to the second decision region and to interpret the received symbol as the first power control command if the received symbol maps to the first decision region and to interpret the received symbol as the second power control command if the received symbol maps to the second decision region.
- 14. A receiver according to claim 12 wherein the circuit is further configured to redefine the first and second asymmetric regions of the symbol space based on at least one or more of a number of transmitters used to transmit the power control command to the receiver, a velocity associated with the receiver, an interference associated with the receiver, a frequency error between at least one of the transmitters and the receiver, a pilot sequence received at the receiver or a parameter associated with transmission power that affects reliability of power control commands.
- 15. A receiver according to claim 12 wherein the first decision region includes a greater portion of the symbol space than the second decision region to provide a bias to interpret the received symbol as the first power control command rather than the second power control command.
- 16. A receiver according to claim 12, wherein the receiver comprises a spread spectrum mobile user terminal, and a transmitter used to transmit the command to the spread spectrum mobile user terminal comprises a base station, wherein the first power control command comprises a first TPC command from the base station to increase a transmit power of the spread spectrum mobile user terminal and the second power control command comprises a second TPC command from the base station to decrease the transmit power of the spread spectrum mobile user terminal.
- 17. A receiver according to claim 16 wherein the TPC command is included in a dedicated physical channel associated with the spread spectrum mobile user terminal operating in a wideband code division multiple access communications system.
- 18. A receiver according to claim 13 wherein the circuit is further configured to receive the transmitted power control command using frequency error information to compensate for a difference in a transmitter frequency used to transmit the power control command and a receiver frequency.
- 19. A receiver according to claim 18 wherein the frequency error information comprises a frequency error estimate based on information included in an Automatic Frequency Control (AFC) block of a communication channel received by the receiver.
- 20. A receiver according to claim 18 wherein a plurality of transmitters transmit at least one power control command to the receiver, wherein the circuit is further configured to receive the at least one power control command using a plurality of frequency error information associated with the plurality of transmitters.
- 21. A receiver according to claim 18 wherein a plurality of transmitters transmit at least one power control command to the receiver, wherein the frequency error information comprises an average of frequency error information associated with the plurality of transmitters.
- 22. A receiver according to claim 12:wherein the symbol space comprises a representation of an IQ coordinate system; and wherein the first decision region includes more than one half of the IQ coordinate system and the second decision region includes less than one half.
- 23. A computer program product for determining transmitted power control commands at a receiver comprising a computer readable storage medium having computer-readable program code means embodied in said medium, the computer-readable program code means comprising computer-readable program code means for defining a first decision region of a symbol space associated with a first power control command at the receiver and a second decision region of the symbol space associated with a second power control command at the receiver, the first and second regions being asymmetric with one another.
- 24. A computer program product according to claim 23 further comprising:
computer-readable program code means for receiving a transmitted power control command at a receiver to provide a received symbol; computer-readable program code means for determining whether the received symbol maps to the first decision region or to the second decision region; computer-readable program code means for interpreting the received symbol as the first power control command if the received symbol maps to the first decision region; and computer-readable program code means for interpreting the received symbol as the second power control command if the received symbol maps to the second decision region.
- 25. A computer program product according to claim 23 further comprising:
computer-readable program code means for redefining the first and second asymmetric regions of the symbol space based on at least one or more of a number of transmitters used to transmit a power control command to the receiver, a velocity associated with the receiver, an interference associated with the receiver, a frequency error between at least one of the transmitters and the receiver, a pilot sequence received at the receiver or a parameter associated with transmission power that affects reliability of power control commands.
- 26. A computer program product according to claim 23 wherein the first decision region includes a greater portion of the symbol space than the second decision region to provide a bias to interpret the received symbol as the first power control command rather than the second power control command.
- 27. A computer program product according to claim 23, wherein the receiver comprises a spread spectrum mobile user terminal, and a transmitter used to transmit the power control command to the spread spectrum mobile user terminal comprises a base station, wherein the first power control command comprises a first TPC command from the base station to increase a transmit power of the spread spectrum mobile user terminal and the second command comprises a second TPC command from the base station to decrease the transmit power of the spread spectrum mobile user terminal.
- 28. A computer program product according to claim 27 wherein the TPC commands are included in a dedicated physical channel associated with the spread spectrum mobile user terminal operating in a wideband code division multiple access communications system.
- 29. A computer program product according to claim 24 wherein the computer-readable program code means for receiving further comprises computer-readable program code means for receiving the transmitted power control command using frequency error information to compensate for a difference in a transmitter frequency used to transmit the power control command and a receiver frequency.
- 30. A method of determining a transmitted power control command at a receiver during soft handover mode in a wideband code division multiple access communications system, the method comprising the step of combining a first determination of a combined power control command received from a plurality of transmitters with a second determination of the combined power control command received from the plurality of transmitters to provide a combined power control command.
- 31. A method according to claim 30:wherein the first determination comprises a first bias towards interpreting the combined power control command as a first TPC command to decrease transmit power; and wherein the second determination comprises a second bias towards interpreting the combined power control command as a second TPC command to increase transmit power.
- 32. A method according to claim 31 wherein the first bias comprises a scaling factor for the first bias based on at least one of a number of transmitters in communication with the receiver during the soft handover, a Signal to Interference Ratio (SIR) associated with a communications channel over which the receiver communicates during soft handover, a number of radio paths used to communicate with the receiver, and a Power Delay Profile (PDP) associated with the communications channel.
- 33. A method according to claim 31 wherein the second bias comprises a scaling factor for the second bias based on at least one of a number of transmitters in communication with the receiver during the soft handover, a Signal to Interference Ratio (SIR) associated with a communications channel over which the receiver communicates during soft handover, a number of radio paths used to communicate with the receiver, and a Power Delay Profile (PDP) associated with the communications channel.
- 34. A method according to claim 31 wherein the first bias comprises a first scaling factor for the first bias and the second bias comprises a second scaling factor for the second bias that is complementary with the first scaling factor.
- 35. A method of determining a transmitted power control command at a receiver during soft handover mode in a wideband code division multiple access communications system, the method comprising the step of combining power control commands received from a plurality of transmitters to provide a combined power control command based on at least one of a number of transmitters in communication with the receiver during the soft handover, a signal-to-interference ratio (SIR) associated with a communications channel, a power delay profile (PDP) associated with the communications channel, and a number of radio paths associated with the communications channel.
- 36. A receiver circuit comprising a circuit for determining a transmitted power control command during soft handover mode in a wideband code division multiple access communications system, the circuit configured to combine a first determination of a combined power control command received from a plurality of transmitters with a second determination of the combined power control command received from the plurality of transmitters to provide a combined power control command.
- 37. A receiver circuit according to claim 36:wherein the first determination comprises a first bias towards interpreting the combined power control command as a first TPC command to decrease transmit power; and wherein the second determination comprises a second bias towards interpreting the combined power control command as a second TPC command to increase transmit power.
- 38. A receiver circuit according to claim 37 wherein the first bias comprises a scaling factor for the first bias based on at least one of a number of transmitters in communication with the receiver during the soft handover, a Signal to Interference Ratio (SIR) associated with a communications channel over which the receiver communicates during soft handover, a number of radio paths used to communicate with the receiver, and a Power Delay Profile (PDP) associated with the communications channel.
- 39. A receiver circuit according to claim 37 wherein the second bias comprises a scaling factor for the second bias based on at least one of a number of transmitters in communication with the receiver during the soft handover, a Signal to Interference Ratio (SIR) associated with a communications channel over which the receiver communicates during soft handover, a number of radio paths used to communicate with the receiver, and a Power Delay Profile (PDP) associated with the communications channel.
- 40. A receiver circuit according to claim 37 wherein the first bias comprises a first scaling factor for the first bias and the second bias comprises a second scaling factor for the second bias that is complementary with the first scaling factor.
- 41. A method of determining transmitted power control commands at a receiver during soft handover mode in a wideband code division multiple access communications system, the method comprising the steps of:
defining a first decision region of a symbol space associated with a first power control command at the receiver and a second decision region of the symbol space associated with a second power control command at the receiver, the first and second regions being asymmetric with one another; first determining of a combined power control command received from a transmitter; second determining of the combined power control command received from the transmitter; combining the first determination of the combined power control command with the second determination of the combined power control command to provide a combined power control command; and determining whether the combined power control command is in the first decision region of the symbol space or in the second decision region of the symbol space.
- 42. A method of determining a transmitted power control command at a receiver during soft handover mode in a wideband code division multiple access communications system, the method comprising the step of combining power control commands received from a plurality of transmitters based on a number of transmitters in communication with the receiver during the soft handover and a Signal to Interference Ratio (SIR) associated with a communications channel over which the receiver communicates during soft handover.
- 43. A method according to claim 42 further comprising the step of combining power control commands received from a plurality of transmitters based on a Power Delay Profile (PDP) associated with the communications channel.
- 44. A method of determining transmitted power control commands at a receiver in a mobile user terminal during soft handover mode in a wideband code division multiple access communications system, the method comprising the steps of:
determining respective power control commands transmitted from a plurality of transmitters; determining respective distances from the respective power control commands to a boundary of an asymmetrically defined decision region of a symbol space; and combining the respective distances to provide a combined power control command.
- 45. A method according to claim 44 further comprising:
comparing the combined power control command to a threshold.
- 46. A method according to claim 45 further comprising:
increasing transmit power of the mobile user terminal if the combined power control command is greater than the threshold.
- 47. A method according to claim 45 further comprising:
decreasing transmit power of the mobile user terminal if the combined power control command is less than the threshold.
CLAIM FOR PRIORITY
[0001] The present application claims priority from U.S. Provisional Application Serial No. 60/412,898 to Nilsson et al., entitled “Improved TPC Decoding,” filed Sep. 23, 2002, and from U.S. Provisional Application Serial No. 60/431,552 to Jousson et al., entitled “Improved TPC Decoding in Soft Handover,” filed Dec. 5, 2002, the entire contents of which are incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60412898 |
Sep 2002 |
US |
|
60431552 |
Dec 2002 |
US |