IP Library Granted Patent US 12696214
Granted Patent B2
US 12696214 · App. 18/468,668 · Granted Jul 28, 2026

Uplink timing and frequency synchronization

Inventors: Shiyang Leng (Allen, TX); Jeongho Jeon (San Jose, CA); Qiaoyang Ye (San Jose, CA); Joonyoung Cho (Portland, OR); Caleb K. Lo (San Jose, CA)
Assignee: Samsung Electronics Co., Ltd.
H04W56/005H04B7/01H04W74/0833H04W84/06
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Quick Facts
Patent No.
US 12696214
App. No.
18/468,668
Granted
Jul 28, 2026
Kind
B2
Abstract

Methods and apparatuses for uplink timing and frequency synchronization in a wireless communication system. A method for operating a user equipment (UE) includes receiving, from a base station (BS), information indicating satellite ephemeris information of a communication satellite associated with the BS, a common timing advance (TA), and a compensated frequency offset (FO). The method further includes transmitting a physical random access channel (PRACH) based on the common TA and the compensated FO and receiving a random access response (RAR) indicating a UE-specific TA and FO. The method further includes, for transmission of an uplink (UL) channel, adjusting a TA and pre-compensating a FO based on the UE-specific TA and FO, respectively.

Claims (51)

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

a transceiver configured to receive, from a base station (BS), satellite ephemeris information of a satellite associated with the BS and common timing advance (TA) parameters; and

a processor coupled with the transceiver and configured to:

determine a TA based on a global navigation satellite system (GNSS) position of the UE, the satellite ephemeris information and the common TA parameters,

determine a frequency shift based on the GNSS position and the satellite ephemeris information, and

pre-compensate the TA and the frequency shift,

wherein:

the transceiver is further configured to perform an uplink transmission based on the pre-compensated TA and the pre-compensated frequency shift,

the satellite ephemeris information includes position information, velocity information, and time information of the satellite,

the common TA parameters includes TA variation rate,

the position information of the satellite is indicated by a first set of parameters coordX, coordY, coordZ and a predefined step size Δ c related to the position information of the satellite, and

the velocity information of the satellite is indicated by a second set of parameters velocityX, velocityY, velocityZ and a predefined step size Δ v related to the velocity information of the satellite.

2 . The UE of claim 1 , wherein the transceiver is further configured to transmit, to the BS, GNSS capability information of the UE.

3 . The UE of claim 1 , wherein the transceiver is further configured to transmit, to the BS, a physical random access channel (PRACH) based on the determined TA and the frequency shift.

4 . A base station (BS) in a wireless communication system, the BS comprising:

a transceiver configured to transmit, to a user equipment (UE), satellite ephemeris information of a satellite associated with the BS and common timing advance (TA) parameters,

wherein a TA is determined based on a global navigation satellite system (GNSS) position of the UE, the satellite ephemeris information and the common TA parameters,

wherein a frequency shift is based on the GNSS position and the satellite ephemeris information,

wherein the TA and the frequency shift are pre-compensated,

wherein an uplink transmission is performed based on the pre-compensated TA and the pre-compensated frequency shift,

wherein the satellite ephemeris information includes position information, velocity information, and time information of the satellite,

wherein the common TA parameters includes TA variation rate,

wherein the position information of the satellite is indicated by a first set of parameters coordX, coordY, coordZ and a predefined step size Δ c related to the position information of the satellite, and

wherein the velocity information of the satellite is indicated by a second set of parameters velocityX, velocityY, velocityZ and a predefined step size Δ v related to the velocity information of the satellite.

5 . The BS of claim 4 , wherein the transceiver is further configured to receive, from the UE, GNSS capability information of the UE.

6 . The BS of claim 4 , wherein the transceiver is further configured to receive, from the UE, a physical random access channel (PRACH) based on the determined TA and the frequency shift.

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

receiving, from a base station (BS), satellite ephemeris information of a satellite associated with the BS and common timing advance (TA) parameters;

determining, a TA based on a global navigation satellite system (GNSS) position of the UE, the satellite ephemeris information and the common TA parameters;

determining, a frequency shift based on the GNSS position and the satellite ephemeris information;

pre-compensating the TA and the frequency shift; and

performing an uplink transmission based on the pre-compensated TA and the pre-compensated frequency shift,

wherein:

the satellite ephemeris information includes position information, velocity information, and time information of the satellite,

the common TA parameters includes TA variation rate,

the position information of the satellite is indicated by a first set of parameters coordX, coordY, coordZ and a predefined step size Δ c related to the position information of the satellite, and

the velocity information of the satellite is indicated by a second set of parameters velocityX, velocityY, velocityZ and a predefined step size Δ v related to the velocity information of the satellite.

8 . The method of claim 7 , further comprising transmitting, to the BS, GNSS capability information of the UE.

9 . The method of claim 7 , further comprising transmitting, to the BS, a physical random access channel (PRACH) based on the determined TA and the frequency shift.

10 . A method performed by a base station (BS) in a wireless communication system, the method comprising:

transmitting, to a user equipment (UE), satellite ephemeris information of a satellite associated with the BS and common timing advance (TA) parameters,

wherein a TA is determined based on a global navigation satellite system (GNSS) position of the UE, the satellite ephemeris information and the common TA parameters,

wherein a frequency shift is determined based on the GNSS position and the satellite ephemeris information,

wherein the TA and the frequency shift are pre-compensated,

wherein an uplink transmission is performed based on the pre-compensated TA and the pre-compensated frequency shift,

wherein the satellite ephemeris information includes position information, velocity information, and time information of the satellite,

wherein the common TA parameters includes TA variation rate,

wherein the position information of the satellite is indicated by a first set of parameters coordX, coordY, coordZ and a predefined step size Δ c related to the position information of the satellite, and

wherein the velocity information of the satellite is indicated by a second set of parameters velocityX, velocityY, velocityZ and a predefined step size Δ v related to the velocity information of the satellite.

11 . The method of claim 10 , further comprising receiving, from the UE, GNSS capability information of the UE.

12 . The method of claim 10 , further comprising receiving, from the UE, a physical random access channel (PRACH) based on the determined TA and the frequency shift.