IP Library › Granted Patent US 11,889,446
Granted Patent B2
US 11,889,446 · App. 17/417,324 · Granted Jan 30, 2024

Method performed by user equipment, and user equipment

Inventors: Chao Luo (Shanghai, CN); Renmao Liu (Shanghai, CN); Shoichi Suzuki (Osaka, JP)
Assignee: SHARP KABUSHIKI KAISHA
H04W56/0045H04W72/044H04W74/0833
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,889,446
App. No.
17/417,324
Granted
Jan 30, 2024
Kind
B2
Abstract

The present disclosure provides a method performed by user equipment, comprising: receiving a timing advance command in a slot n; and determining, according to the slot n in which the timing advance command is received and/or other information related to an uplink transmission timing adjustment, time to apply the uplink transmission timing adjustment.

Claims (26)

1. A user equipment comprising:

receiving circuitry configured to receive a random access response including a timing advance command, the timing advance command indicating an index value T A in a form of a timing advance command field of 12 bits, the timing advance command corresponding to a Timing Advanced Group (TAG), the TAG being one of multiple TAGs;

transmitting circuitry configured to adjust, based on a timing advance value N TA , uplink transmission timing for the TAG with a subcarrier spacing (SCS), the timing advance value N TA being determined based on (i) the index value T A and (ii) SCS configuration μ of the SCS; and

processing circuitry configured to determine a value N with respect to a minimum SCS among SCSs of all configured uplink bandwidth parts (UL BWPs) for all uplink carriers in the TAG and for all configured initial UL BWPs each provided by a higher-layer parameter initialuplinkBWP, wherein

the value N is a maximum timing advance value in milliseconds that is providable by the timing advance command field of 12 bits, and

the adjustment to the uplink transmission timing is applied from a starting point of an uplink slot, the uplink slot being based on (a) an uplink slot in which the timing advance command is received and (b) the value N.

2. A method performed by a user equipment comprising:

receiving a random access response, the random access response including a timing advance command indicating an index value T A in a form of a timing advance command field of 12 bits, the timing advance command corresponding to a Timing Advanced Group (TAG), the TAG being one of multiple TAGs;

adjusting, based on a timing advance value N TA , uplink transmission timing for the TAG with a subcarrier spacing (SCS), the timing advance value N TA being determined based on (i) the index value T A and (ii) SCS configuration μ of the SCS; and

determining a value N with respect to a minimum SCS among SCSs of all configured uplink bandwidth parts (UL BWPs) for all uplink carriers in the TAG and for all configured initial UL BWPs each provided by a higher-layer parameter initialuplinkBWP, wherein

the value N is a maximum timing advance value in milliseconds that is providable by the timing advance command field of 12 bits, and

the adjustment to the uplink transmission timing is applied from a starting point of an uplink slot, the uplink slot being based on (a) an uplink slot in which the timing advance command is received and (b) the value N.

3. A base station comprising:

processing circuitry configured to generate a random access response including a timing advance command, the timing advance command indicating an index value T A in a form of a timing advance command field of 12 bits, the timing advance command corresponding to a Timing Advanced Group (TAG), the TAG being one of multiple TAGs, (i) the index value T A and (ii) a subcarrier spacing (SCS) configuration μ of the SCS being used by a user equipment to determine a timing advance value N TA based on which the user equipment determines uplink transmission timing for the TAG with the SCS; and

transmitting circuitry configured to transmit the random access response to the user equipment, wherein

the processing circuitry is configured to generate a higher-layer parameter initialuplinkBWP based on which the user equipment determines a value N with respect to a minimum subcarrier spacing (SCS) among SCSs of all configured UL BWPs for all uplink carriers in the TAG and for all configured initial UL BWPs each provided by the higher-layer parameter,

the transmitting circuitry is configured to transmit the higher-layer parameter to the user equipment,

the value N is a maximum timing advance value in milliseconds that is providable by the timing advance command field of 12 bits, and

the adjustment to the uplink transmission timing is applied from a starting point of an uplink slot, the uplink slot being based on (a) an uplink slot in which the timing advance command is received and (b) the value N.

4. A method performed by a base station comprising:

generating a random access response including a timing advance command, the timing advance command indicating an index value T A in a form of a timing advance command field of 12 bits, the timing advance command corresponding to a Timing Advanced Group (TAG), the TAG being one of multiple TAGs, (i) the index value T A and (ii) a subcarrier spacing (SCS) configuration μ of the SCS being used by a user equipment to determine a timing advance value N TA based on which the user equipment determines uplink transmission timing for the TAG with the SCS;

transmitting the random access response to the user equipment;

generating a higher-layer parameter initialuplinkBWP based on which the user equipment determines a value N with respect to a minimum subcarrier spacing (SCS) among SCSs of all configured UL BWPs for all uplink carriers in the TAG and for all configured initial UL BWPs each provided by the higher-layer parameter; and

transmitting the higher-layer parameter to the user equipment, wherein

the value N is a maximum timing advance value in milliseconds that is providable by the timing advance command field of 12 bits, and

the adjustment to the uplink transmission timing is applied from a starting point of an uplink slot, the uplink slot being based on (a) an uplink slot in which the timing advance command is received and (b) the value N.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2021
From: LUO, CHAO; LIU, RENMAO; SUZUKI, SHOICHI
To: SHARP KABUSHIKI KAISHA
Reel/Frame 056624/0118 →
Priority Claims (1)
CN 201811586367.0 · Dec 24, 2018 · national
Continuity (1)
Related Publication 20220053442A1 · Feb 17, 2022