IP Library Granted Patent US 11,432,244
Granted Patent B2
US 11,432,244 · App. 16/494,361 · Granted Aug 30, 2022

Method and device for determining power control configuration

Inventors: Jinhua Liu (Beijing, CN); Rui Fan (Beijing, CN); Hai Wang (Beijing, CN)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04W52/146H04W52/08H04W52/10H04W72/1263H04W72/14
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Quick Facts
Patent No.
US 11,432,244
App. No.
16/494,361
Granted
Aug 30, 2022
Kind
B2
Abstract

A method and device for determining power control configuration. it is determined whether a first transmit power control configuration based on a first uplink transmission is outdated; and a second transmit power control configuration for a second uplink transmission is determined based on a power control scheme. Therefore, transmit power control efficiency of sparse data transmissions may be improved.

Claims (49)

1. A method in a terminal device, comprising:

determining whether a first transmit power control configuration based on a first uplink transmission is outdated when a second uplink transmission is scheduled using an uplink grant by a network device, wherein determining whether the first transmit power control configuration is outdated comprises:

initiating a first timer with a preconfigured value when the first uplink transmission is transmitted; and

determining that the first transmit power configuration is outdated when the first timer expires before the second uplink transmission is scheduled;

restarting the first timer when the second uplink transmission is scheduled before the first timer expires; and

in response to determining whether the first transmit power configuration is outdated, determining to perform power control according to a second transmit power control configuration for the second uplink transmission based on a power control scheme, wherein the second transmit power control configuration is determined based on a close loop power control scheme when the first transmit power control configuration is not outdated, and the second transmit power control configuration is determined based on an open loop power control scheme when the first transmit power control configuration is outdated.

2. The method according to claim 1 , wherein the close loop power control scheme comprises that the second transmit power control configuration is determined based on a transmit power control command in the uplink grant from the network device; and

the open loop power control scheme comprises that the second transmit power control configuration is determined based on a predetermined parameter of the terminal device.

3. The method according to claim 1 , wherein the method further comprises:

receiving a first indication from the network device for indicating a close loop power control scheme to be applied or an open loop power control scheme to be applied; and

determining that the first transmit power control configuration is outdated according to the first indication.

4. The method according to claim 3 , wherein a second timer with a preconfigured value is initiated by the network device when the first uplink transmission is received, and the first indication in the uplink grant is transmitted by the network device if the second timer expires when the second uplink transmission is scheduled.

5. The method according to claim 3 , wherein the first indication is transmitted via downlink control information; and a transmit power control command is comprised in the downlink control information when the first indication is used to indicate that the close loop power control scheme is to be applied.

6. The method according to claim 1 , wherein the method further comprises:

receiving a relative transmit power control command or an absolute transmit power command, and a second indication for indicating the relative transmit power control command is transmitted or the absolute transmit power command is transmitted.

7. The method according to claim 6 , wherein the second indication is transmitted via downlink control information; and the relative transmit power control command or the absolute transmit power control command is comprised in the downlink control information.

8. The method according to claim 1 , wherein the method further comprises:

receiving a configuration information for configuring a power control scheme.

9. The method according to claim 8 , wherein the configuration information is transmitted via a radio resource control (RRC) signaling or a media access control (MAC) control element (CE).

10. The method according to claim 8 , wherein the power control scheme comprises one of the following:

a scheme in which accumulation of transmit power control configuration is applied;

a scheme in which accumulation of transmit power control configuration is not applied;

a scheme in which the close loop power control scheme and the open loop power control scheme is conditionally switched;

a scheme in which a maximum value is applied based on the close loop power control scheme and the open loop power control scheme;

a scheme in which a factor is applied based on the close loop power control scheme and the open loop power control scheme; and

a scheme in which a relative transmit power control command or an absolute transmit power command is conditionally switched.

11. A computer program product being comprising a non-transitory computer readable storage medium and including instructions which, when executed on a processor use the terminal device to perform a method for determining power control configuration according to claim 1 .

12. A method in a terminal device, comprising:

determining whether a first transmit power control configuration based on a first uplink transmission is outdated when a second uplink transmission is scheduled using an uplink grant by a network device; and

determining to perform power control according to a second transmit power control configuration for the second uplink transmission based on a power control scheme, wherein the second transmit power control configuration for the second uplink transmission is determined based on the following formula,

f c ( i )=max( f c ( i− 1)+ tpc ·step,Δ)

where, f c (i) denotes the second transmit power control configuration for the second uplink transmission, f c (i−1) denotes accumulation of transmit power control configuration by the last uplink transmission, tpc denotes a transmit power control command from the network device in the close loop power control scheme, step denotes a configured power control step size, Δ denotes a predetermined parameter of the terminal device in the open loop power control scheme, or

wherein the second transmit power control configuration for the second uplink transmission is determined based on the following formula,

f c ( i )=max( tpc ·step,Δ)

where, f c (i) denotes the second transmit power control configuration for the second uplink transmission, tpc denotes a transmit power control command from the network device in the close loop power control scheme, step denotes a configured power control step size, A denotes a predetermined parameter of the terminal device in the open loop power control scheme, or

wherein the second transmit power control configuration for the second uplink transmission is determined based on the following formula,

f c ( i )=ε·( f c ( i− 1)+ tpc ·step)+(1−ε)·Δ

where, f c (i) denotes the second transmit power control configuration for the second uplink transmission, f c (i−1) denotes accumulation of transmit power control configuration by the last uplink transmission, tpc denotes a transmit power control command from the network device in the close loop power control scheme, step denotes a configured power control step size, A denotes a predetermined parameter of the terminal device in the open loop power control scheme, E denotes a factor and 0≤ε≤1, or

wherein the second transmit power control configuration for the second uplink transmission is determined based on the following formula,

f c ( i )=ε·( tpc ·step)+(1−ε)·Δ

where, f c (i) denotes the second transmit power control configuration for the second uplink transmission, tpc denotes a transmit power control command from the network device in the close loop power control scheme, step denotes a configured power control step size, A denotes a predetermined parameter of the terminal device in the open loop power control scheme, E denotes a factor and 0≤ε≤1.

13. A terminal device, comprising:

a processor; and

memory, wherein the memory containing instructions executable by the processor whereby the terminal device is operative to

determine whether a first transmit power control configuration based on a first uplink transmission is outdated when a second uplink transmission is scheduled using an uplink grant by a network device, wherein determining whether the first transmit power control configuration is outdated comprises:

initiating a first timer with a preconfigured value when the first uplink transmission is transmitted; and

determining that the first transmit power configuration is outdated when the first timer expires before the second uplink transmission is scheduled;

restart the first timer when the second uplink transmission is scheduled before the first timer expires; and

in response to determining whether the first transmit power configuration is outdated, determine a second transmit power control configuration for the second uplink transmission based on a power control scheme, wherein the second transmit power control configuration is determined based on a close loop power control scheme when the first transmit power control configuration is not outdated, and the second transmit power control configuration is determined based on an open loop power control scheme when the first transmit power control configuration is outdated.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2019
From: LIU, JINHUA; FAN, RUI; WANG, HAI
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 050380/0613 →
Priority Claims (1)
WO PCT/CN2017/078085 · Mar 24, 2017 · international
Continuity (1)
Related Publication 20210410074A1 · Dec 30, 2021