IP Library Granted Patent US 10,694,470
Granted Patent B2
US 10,694,470 · App. 14/913,210 · Granted Jun 23, 2020

Method and apparatus for controlling uplink power in wireless communication system

Inventors: Yunjung Yi (Seoul, KR); Joonkui Ahn (Seoul, KR); Kijun Kim (Seoul, KR); Dongyoun Seo (Seoul, KR); Suckchel Yang (Seoul, KR)
Assignee: LG Electronics Inc.
H04W52/146H04W52/281H04W52/34H04W52/346H04W52/365H04W52/367H04W72/0473H04W72/10H05K999/99H04L5/001H04W52/40H04W88/06
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Quick Facts
Patent No.
US 10,694,470
App. No.
14/913,210
Granted
Jun 23, 2020
Kind
B2
Abstract

A method and apparatus for controlling an uplink power in a wireless communication system is provided. A user equipment (UE) allocates a first minimum reserved power for a first carrier group and a second minimum reserved power for a second carrier group, and after allocating the first minimum reserved power and the second minimum power, applies a power sharing rule for remaining power, except the first minimum reserved power and the second minimum reserved power, between the first carrier group and the second carrier group.

Claims (40)

1. A method performed by a user equipment (UE) in a wireless communication system, the method comprising:

receiving, by the UE, information on a guaranteed power for a first carrier group (CG) and information on a guaranteed power for a second CG from a network via a higher layer,

wherein the guaranteed power for the first CG is a minimum power allocated to the first CG and the guaranteed power for the second CG is a minimum power allocated to the second CG; and

determining, by the UE, an uplink power for the first CG in a first subframe based on the guaranteed power for the second CG, a channel priority and an unused power from the guaranteed power for the second CG in a second subframe which overlaps with the first subframe in time; and

performing an uplink transmission to the first CG in the first subframe based on the uplink power for the first CG,

wherein the UE is connected to both a master eNodeB (MeNB) and a secondary eNB (SeNB) in dual connectivity.

2. The method of claim 1 , wherein the information on the guaranteed power for the first CG and the information on the guaranteed power for the second CG is received from the MeNB.

3. The method of claim 1 , wherein the guaranteed power for the first CG and the guaranteed power for the second CG are configured based on a ratio.

4. The method of claim 1 , wherein the uplink transmission is a physical random access channel (PRACH) transmission, and

wherein the uplink power for the first CG is not limited by the guaranteed power for the second CG.

5. The method of claim 1 , wherein a PRACH has a highest priority in the channel priority.

6. The method of claim 1 , wherein a physical uplink control channel (PUCCH) has a higher priority than a physical uplink shared channel (PUSCH) in the channel priority.

7. The method of claim 1 , wherein a PUSCH with uplink control information (UCI) including at least one of a hybrid automatic repeat request (HARQ)-acknowledgement (ACK) or a scheduling request (SR) has a higher priority than a PUSCH with UCI not including at least one of the HARQ-ACK or the SR in the channel priority.

8. The method of claim 1 , wherein a PUSCH with UCI has a higher priority than a PUSCH without the UCI in the channel priority.

9. The method of claim 1 , wherein the uplink power for the first CG is allocated determined from any remaining power, wherein the remaining power is derived by subtracting the guaranteed power for the second CG from a configured maximum power for the UE.

10. The method of claim 1 , further comprising:

performing power scaling within the first CG and the second CG.

11. The method of claim 1 , wherein the first CG is a master cell group (MCG) for the MeNB, and

wherein the second CG is a secondary cell group (SCG) for the SeNB.

12. The method of claim 1 , wherein the first CG is a SCG for the SeNB, and

wherein the second CG is a MCG for the MeNB.

13. The method of claim 1 , wherein the first CG includes a plurality of component carriers (CCs), and

wherein the second CG includes a plurality of CCs.

14. A user equipment (UE) in a wireless communication system, the UE comprising:

a memory;

a receiver and a transmitter; and

a processor, operatively coupled to the memory and the receiver and the transmitter,

wherein the processor UE is configured to:

receive information on a guaranteed power for a first carrier group (CG) and information on a guaranteed power for a second CG from a network via a higher layer,

wherein the guaranteed power for the first CG is a minimum power allocated to the first CG and the guaranteed power for the second CG is a minimum power allocated to the second CG,

determine an uplink power for the first CG in a first subframe based on the guaranteed power for the second CG, a channel priority and an unused power from the guaranteed power for the second CG in a second subframe which overlaps with the first subframe in time, and

perform an uplink transmission to the first CG in the first subframe based on the uplink power for the first CG,

wherein the UE is connected to both a master eNodeB (MeNB) and a secondary eNB (SeNB) in dual connectivity.

15. A processor for a wireless communication device in a wireless communication system,

wherein the processor is configured to:

control the wireless communication device to receive information on a guaranteed power for a first carrier group (CG) and information on a guaranteed power for a second CG from a network via a higher layer,

wherein the guaranteed power for the first CG is a minimum power allocated to the first CG and the guaranteed power for the second CG is a minimum power allocated to the second CG, and

determine an uplink power for the first CG in a first subframe based on the guaranteed power for the second CG, a channel priority and an unused power from the guaranteed power for the second CG in a second subframe which overlaps with the first subframe in time, and

control the wireless communication device to perform an uplink transmission to the first CG in the first subframe based on the uplink power for the first CG,

wherein the UE is connected to both a master eNodeB (MeNB) and a secondary eNB (SeNB) in dual connectivity.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2016
From: YI, YUNJUNG; AHN, JOONKUI; KIM, KIJUN; SEO, DONGYOUN; YANG, SUCKCHEL
To: LG ELECTRONICS INC.
Reel/Frame 037783/0915 →
Continuity (14)
Provisional Application 61873804 · Sep 4, 2013
Provisional Application 61927503 · Jan 15, 2014
Provisional Application 61938147 · Feb 11, 2014
Provisional Application 61940379 · Feb 15, 2014
Provisional Application 61943457 · Feb 23, 2014
Provisional Application 61976486 · Apr 7, 2014
Provisional Application 61981170 · Apr 17, 2014
Provisional Application 61984030 · Apr 24, 2014
Provisional Application 62009311 · Jun 8, 2014
Provisional Application 62014120 · Jun 19, 2014
Provisional Application 62015505 · Jun 22, 2014
Provisional Application 62033630 · Aug 5, 2014
Provisional Application 62034153 · Aug 7, 2014
Related Publication 20160205632A1 · Jul 14, 2016