IP Library › Granted Patent US 11,490,402
Granted Patent B2
US 11,490,402 · App. 16/918,839 · Granted Nov 1, 2022

Power control based on semi-static direction for dual connectivity

Inventors: Kazuki Takeda (Minato-ku, JP); Seyedkianoush Hosseini (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04W72/1268H04L5/001H04W52/34H04W72/1289H04W72/14
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Quick Facts
Patent No.
US 11,490,402
App. No.
16/918,839
Granted
Nov 1, 2022
Kind
B2
Abstract

Methods, systems, and devices for wireless communications are described. A user equipment (UE) may identify a maximum transmission power for an uplink transmission on a first cell of a first cell group (CG) based on a direction of communications (e.g., uplink, downlink, or flexible) with a separate cell of a second CG during a same duration of the uplink transmission and within a same first frequency range, where the direction of communications is either an actual direction or an assumed direction. The UE may receive an uplink grant scheduling the uplink transmission during a symbol and within the first frequency range, determine the maximum transmission power for the UE based on the direction of communications for the separate cell during the symbol and within the first frequency range, and subsequently transmit the uplink transmission in accordance with the maximum transmission power.

Claims (77)

1. A method for wireless communications at a user equipment (UE), comprising:

identifying that the UE is configured with a first cell group and a second cell group, the first cell group having a first cell operating within a first frequency range and a second cell operating with a second frequency range, and the second cell group having at least a third cell operating within the first frequency range;

receiving an uplink grant scheduling an uplink transmission on the first cell during a symbol and within the first frequency range;

determining a maximum transmission power for the uplink transmission based at least in part on a direction of communications with the third cell during a duration of the symbol and within a frequency range that includes the first frequency range and is exclusive of the second frequency range; and

transmitting the uplink transmission on the first cell of the first cell group within the first frequency range in accordance with the maximum transmission power.

2. The method of claim 1 , wherein determining the maximum transmission power for the uplink transmission comprises:

determining to use a first maximum transmission power when an actual direction of communications with the third cell within the first frequency range is downlink; and

determining to use a second maximum transmission power when the actual direction of communications with the third cell within the first frequency range is uplink or flexible, wherein the second maximum transmission power is different from the first maximum transmission power.

3. The method of claim 2 , wherein the second maximum transmission power is less than the first maximum transmission power.

4. The method of claim 1 , wherein determining the maximum transmission power for the uplink transmission comprises:

assuming that the direction of communications with the third cell within the first frequency range is either uplink or flexible; and

determining to use, as the maximum transmission power, a lesser of two selectable maximum transmission power values, based at least in part on the assumption.

5. The method of claim 1 , further comprising:

determining whether to use an actual direction or an assumed direction of communications with the third cell within the first frequency range in determining the maximum transmission power for the uplink transmission.

6. The method of claim 1 , further comprising:

receiving an additional uplink grant scheduling an additional uplink transmission on the second cell within the second frequency range; and

determining an additional transmission power for the additional uplink transmission based at least in part on a direction of communications with a fourth cell of the second cell group within the second frequency range but not within the first frequency range.

7. The method of claim 6 , wherein the uplink grant and the additional uplink grant are received on the first cell and the second cell, respectively, and wherein the maximum transmission power and the additional transmission power are each determined based at least in part on the direction of communications within respective frequency ranges.

8. The method of claim 6 , wherein the uplink grant and the additional uplink grant are received jointly on the first cell and with a carrier indication field to indicate which component carrier each of the uplink grant and the additional uplink grant pertain, and wherein the maximum transmission power and the additional transmission power are each determined based at least in part on the direction of communications within respective frequency ranges.

9. The method of claim 1 , further comprising:

identifying that cross-carrier scheduling across cells in different frequency ranges is configured, such that the uplink grant is received on a component carrier within the second frequency range, while the uplink transmission is scheduled within the first frequency range; and

determining to use, as the maximum transmission power, a lesser of two selectable maximum transmission power values, based at least in part on cross-carrier scheduling across cells in different frequency ranges being configured.

10. The method of claim 9 , wherein the determination to use the lesser of the two selectable maximum transmission power values is based on an assumed direction of communications with the third cell within the first frequency range.

11. The method of claim 9 , wherein determining to use, as the maximum transmission power, the lesser of the two selectable maximum transmission power values further comprises:

identifying that the uplink grant is received via a downlink control information message; and

determining to use the lesser of the two selectable maximum transmission power values as the maximum transmission power based on both the uplink grant being received via the downlink control information message and on cross-carrier scheduling across cells in different frequency ranges being configured.

12. The method of claim 9 , wherein determining to use, as the maximum transmission power, the lesser of the two selectable maximum transmission power values further comprises:

identifying that the uplink grant is received via a downlink control information message of format 0_1 with a carrier indication field; and

determining to use the lesser of the two selectable maximum transmission power values as the maximum transmission power based on both the uplink grant being received via the downlink control information message having format 0_1 and the carrier indication field and on cross-carrier scheduling across cells in different frequency ranges being configured.

13. The method of claim 1 , further comprising:

determining an actual direction based at least in part on a semi-static time domain duplexing configuration, a synchronization signal/physical broadcast channel block measurement time configuration window, a downlink channel monitoring occasion configuration, a downlink semi-persistent scheduling configuration, medium access control information, or a combination thereof.

14. The method of claim 1 , wherein the direction comprises an uplink, downlink, or flexible transmission direction.

15. An apparatus for wireless communications at a user equipment (UE), comprising:

a processor,

memory coupled with the processor; and

instructions stored in the memory and executable by the processor to cause the apparatus to:

identify that the UE is configured with more than one cell group, with a first cell group having a first cell operating within a first frequency range and a second cell operating with a second frequency range, and with a second cell group having at least a third cell operating within the first frequency range;

receive an uplink grant scheduling an uplink transmission on the first cell during a symbol and within the first frequency range;

determine a maximum transmission power for the uplink transmission based at least in part on a direction of communications with the third cell during a duration of the symbol and within a frequency range that includes the first frequency range and is exclusive of the second frequency range; and

transmit the uplink transmission on the first cell of the first cell group within the first frequency range in accordance with the maximum transmission power.

16. The apparatus of claim 15 , wherein the instructions to determine the maximum transmission power for the uplink transmission are executable by the processor to cause the apparatus to:

determine to use a first maximum transmission power when an actual direction of communications with the third cell within the first frequency range is downlink; and

determine to use a second maximum transmission power when the actual direction of communications with the third cell within the first frequency range is uplink or flexible, wherein the second maximum transmission power is different from the first maximum transmission power.

17. The apparatus of claim 16 , wherein the second maximum transmission power is less than the first maximum transmission power.

18. The apparatus of claim 15 , wherein the instructions to determine the maximum transmission power for the uplink transmission are executable by the processor to cause the apparatus to:

assume that the direction of communications with the third cell within the first frequency range is either uplink or flexible; and

determine to use, as the maximum transmission power, a lesser of two selectable maximum transmission power values, based at least in part on the assumption.

19. The apparatus of claim 15 , wherein the instructions are further executable by the processor to cause the apparatus to:

determine whether to use an actual direction or an assumed direction of communications with the third cell within the first frequency range in determining the maximum transmission power for the uplink transmission.

20. The apparatus of claim 15 , wherein the instructions are further executable by the processor to cause the apparatus to:

receive an additional uplink grant scheduling an additional uplink transmission on the second cell within the second frequency range; and

determine an additional transmission power for the additional uplink transmission based at least in part on a direction of communications with a fourth cell of the second cell group within the second frequency range but not within the first frequency range.

21. The apparatus of claim 20 , wherein the uplink grant and the additional uplink grant are received on the first cell and the second cell, respectively, and wherein the maximum transmission power and the additional transmission power are each determined based at least in part on the direction of communications within respective frequency ranges.

22. The apparatus of claim 20 , wherein the uplink grant and the additional uplink grant are received jointly on the first cell and with a carrier indication field to indicate which component carrier each of the uplink grant and the additional uplink grant pertain, and wherein the maximum transmission power and the additional transmission power are each determined based at least in part on the direction of communications within respective frequency ranges.

23. The apparatus of claim 15 , wherein the instructions are further executable by the processor to cause the apparatus to:

identify that cross-carrier scheduling across cells in different frequency ranges is configured, such that the uplink grant is received on a component carrier within the second frequency range, while the uplink transmission is scheduled within the first frequency range; and

determine to use, as the maximum transmission power, a lesser of two selectable maximum transmission power values, based at least in part on cross-carrier scheduling across cells in different frequency ranges being configured.

24. The apparatus of claim 23 , wherein the determination to use the lesser of the two selectable maximum transmission power values is based on an assumed direction of communications with the third cell within the first frequency range.

25. The apparatus of claim 23 , wherein the instructions to determine to use, as the maximum transmission power, the lesser of the two selectable maximum transmission power values further are executable by the processor to cause the apparatus to:

identify that the uplink grant is received via a downlink control information message; and

determine to use the lesser of the two selectable maximum transmission power values as the maximum transmission power based on both the uplink grant being received via the downlink control information message and on cross-carrier scheduling across cells in different frequency ranges being configured.

26. The apparatus of claim 23 , wherein the instructions to determine to use, as the maximum transmission power, the lesser of the two selectable maximum transmission power values further are executable by the processor to cause the apparatus to:

identify that the uplink grant is received via a downlink control information message of format 0_1 with a carrier indication field; and

determine to use the lesser of the two selectable maximum transmission power values as the maximum transmission power based on both the uplink grant being received via the downlink control information message having format 0_1 and the carrier indication field and on cross-carrier scheduling across cells in different frequency ranges being configured.

27. The apparatus of claim 15 , wherein the instructions are further executable by the processor to cause the apparatus to:

determine an actual direction based at least in part on a semi-static time domain duplexing configuration, a synchronization signal/physical broadcast channel block measurement time configuration window, a downlink channel monitoring occasion configuration, a downlink semi-persistent scheduling configuration, medium access control information, or a combination thereof.

28. The apparatus of claim 15 , wherein the direction comprises an uplink, downlink, or flexible transmission direction.

29. An apparatus for wireless communications at a user equipment (UE), comprising:

means for identifying that the UE is configured with more than one cell group, with a first cell group having a first cell operating within a first frequency range and a second cell operating with a second frequency range, and with a second cell group having at least a third cell operating within the first frequency range;

means for receiving an uplink grant scheduling an uplink transmission on the first cell during a symbol and within the first frequency range;

means for determining a maximum transmission power for the uplink transmission based at least in part on a direction of communications with the third cell during a duration of the symbol and within a frequency range that includes the first frequency range and is exclusive of the second frequency range; and

means for transmitting the uplink transmission on the first cell of the first cell group within the first frequency range in accordance with the maximum transmission power.

30. A non-transitory computer-readable medium storing code for wireless communications at a user equipment (UE), the code comprising instructions executable by a processor to:

identify that the UE is configured with more than one cell group, with a first cell group having a first cell operating within a first frequency range and a second cell operating with a second frequency range, and with a second cell group having at least a third cell operating within the first frequency range;

receive an uplink grant scheduling an uplink transmission on the first cell during a symbol and within the first frequency range;

determine a maximum transmission power for the uplink transmission based at least in part on a direction of communications with the third cell during a duration of the symbol and within a frequency range that includes the first frequency range and is exclusive of the second frequency range; and

transmit the uplink transmission on the first cell of the first cell group within the first frequency range in accordance with the maximum transmission power.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2021
From: TAKEDA, KAZUKI; HOSSEINI, SEYEDKIANOUSH
To: QUALCOMM INCORPORATED
Reel/Frame 055000/0208 →
Continuity (2)
Provisional Application 62870880 · Jul 5, 2019
Related Publication 20210007122A1 · Jan 7, 2021
Cited By (1)
US 12,213,131