IP Library Granted Patent US 10,411,940
Granted Patent B2
US 10,411,940 · App. 16/242,560 · Granted Sep 10, 2019

Method and apparatus for transmitting and receiving downlink channel

Inventors: Hyunsoo Ko (Seoul, KR); Kijun Kim (Seoul, KR); Eunsun Kim (Seoul, KR); Sukhyon Yoon (Seoul, KR)
Assignee: LG Electronics Inc.
H04L27/2666H04J11/0069H04W48/12H04W72/0453H04W72/1273
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 10,411,940
App. No.
16/242,560
Granted
Sep 10, 2019
Kind
B2
Abstract

The present disclosure discloses a method for receiving a downlink signal by a UE in a wireless communication system. Particularly, the method may include receiving a synchronization signal block (SSB) including a primary synchronization signal (PSS), a secondary synchronization signal (SSS), and a physical broadcasting channel (PBCH), and obtaining an indicator indicating a subcarrier spacing for the downlink channel from the PBCH, and receiving the downlink signal on the basis of the subcarrier spacing. The indicator may indicate a different subcarrier spacing according to a frequency band in which the UE operates.

Claims (50)

1. A method of receiving a downlink common channel (DL-CCH) by a user equipment (UE) operating in a frequency band in a wireless communication system, the method comprising:

receiving a synchronization signal block (SSB) that comprises (i) a primary synchronization signal (PSS), (ii) a secondary synchronization signal (SSS), and (iii) a physical broadcasting channel (PBCH);

determining a subcarrier spacing for the DL-CCH based on (i) 1-bit information that is obtained via the PBCH, and (ii) the frequency band in which the UE operates; and

receiving the DL-CCH based on the subcarrier spacing,

wherein for the frequency band being in a first frequency range, the subcarrier spacing is determined as one of a first subcarrier spacing or a second subcarrier spacing based on the 1-bit information, and

wherein for the frequency band being in a second frequency range, the subcarrier spacing is determined as one of a third subcarrier spacing or a fourth subcarrier spacing based on the 1-bit information.

2. The method according to claim 1 , wherein the 1-bit information is either a first binary value or a second binary value,

wherein for the 1-bit information being equal to the first binary value, the subcarrier spacing is determined as the first subcarrier spacing or the third subcarrier spacing depending on whether the frequency band is in the first frequency range or in the second frequency range, and

wherein for the 1-bit information being equal to the second binary value, the subcarrier spacing is determined as the second subcarrier spacing or the fourth subcarrier spacing depending on whether the frequency band is in the first frequency range or in the second frequency range.

3. The method according to claim 1 , wherein for the frequency band being in the first frequency range, the subcarrier spacing is determined as one of 60 kHz or 120 kHz based on the 1-bit information.

4. The method according to claim 1 , wherein for the frequency band being in the second frequency range, the subcarrier spacing is determined as one of 15 kHz or 30 kHz based on the 1-bit information.

5. The method according to claim 1 , wherein the DL-CCH is configured to carry at least one of system information or a DL message for initial access.

6. The method according to claim 5 , wherein a subcarrier spacing for the system information is equal to a subcarrier spacing for the DL message for initial access.

7. A user equipment (UE) configured to receive a downlink common channel (DL-CCH) in a frequency band in a wireless communication system, the UE comprising:

a transceiver;

at least one processor; and

at least one computer memory operably connectable to the at least one processor and storing instructions that, when executed, cause the at least one processor to perform operations comprising:

receiving, through the transceiver, a synchronization signal block (SSB) that comprises (i) a primary synchronization signal (PSS), (ii) a secondary synchronization signal (SSS), and (iii) a physical broadcasting channel (PBCH);

determining a subcarrier spacing for the DL-CCH based on (i) 1-bit information that is obtained via the PBCH, and (ii) the frequency band in which the UE operates; and

receiving, through the transceiver, the DL-CCH based on the subcarrier spacing,

wherein for the frequency band being in a first frequency range, the subcarrier spacing is determined as one of a first subcarrier spacing or a second subcarrier spacing based on the 1-bit information, and

wherein for the frequency band being in a second frequency range, the subcarrier spacing is determined as one of a third subcarrier spacing or a fourth subcarrier spacing based on the 1-bit information.

8. The UE according to claim 7 , wherein the 1-bit information is either a first binary value or a second binary value,

wherein for the 1-bit information being equal to the first binary value, the subcarrier spacing is determined as the first subcarrier spacing or the third subcarrier spacing depending on whether the frequency band is in the first frequency range or in the second frequency range, and

wherein for the 1-bit information being equal to the second binary value, the subcarrier spacing is determined as the second subcarrier spacing or the fourth subcarrier spacing depending on whether the frequency band is in the first frequency range or in the second frequency range.

9. The UE according to claim 7 , wherein for the frequency band being in the first frequency range, the subcarrier spacing is determined as one of 60 kHz or 120 kHz based on the 1-bit information.

10. The UE according to claim 7 , wherein for the frequency band being in the second frequency range, the subcarrier spacing is determined as one of 15 kHz or 30 kHz based on the 1-bit information.

11. The UE according to claim 7 , wherein the DL-CCH is configured to carry at least one of system information or a DL message for initial access.

12. The UE according to claim 11 , wherein a subcarrier spacing for the system information is equal to a subcarrier spacing for the DL message for initial access.

13. A method of transmitting a downlink common channel (DL-CCH) by a base station (BS) to a user equipment (UE) in a frequency band in a wireless communication system, the method comprising:

transmitting a synchronization signal block (SSB) that comprises (i) a primary synchronization signal (PSS), (ii) a secondary synchronization signal (SSS), and (iii) a physical broadcasting channel (PBCH); and

transmitting the DL-CCH based on a subcarrier spacing that is related to (i) 1-bit information that is transmitted via the PBCH, and (ii) the frequency band in which the UE operates,

wherein for the frequency band being in a first frequency range, the subcarrier spacing is one of a first subcarrier spacing or a second subcarrier spacing based on the 1-bit information, and

wherein for the frequency band being in a second frequency range, the subcarrier spacing is one of a third subcarrier spacing or a fourth subcarrier spacing based on the 1-bit information.

14. A base station (BS) configured to transmit a downlink common channel (DL-CCH) to a user equipment (UE) in a frequency band in a wireless communication system, the BS comprising:

a transceiver;

at least one processor; and

at least one computer memory operably connectable to the at least one processor and storing instructions that, when executed, cause the at least one processor perform operations comprising:

transmitting, through the transceiver, a synchronization signal block (SSB) that comprises (i) a primary synchronization signal (PSS), (ii) a secondary synchronization signal (SSS), and (iii) a physical broadcasting channel (PBCH), and

transmitting, through the transceiver, the DL-CCH based on a subcarrier spacing that is related to (i) 1-bit information that is transmitted via the PBCH, and (ii) the frequency band in which the UE operates,

wherein for the frequency band being in a first frequency range, the subcarrier spacing is one of a first subcarrier spacing or a second subcarrier spacing based on the 1-bit information, and

wherein for the frequency band being in a second frequency range, the subcarrier spacing is one of a third subcarrier spacing or a fourth subcarrier spacing based on the 1-bit information.

15. The method according to claim 5 , wherein the system information that is carried by the DL-CCH is remaining minimum system information (RMSI).

16. The method according to claim 1 , wherein for the frequency band being in the first frequency range, the subcarrier spacing is the first subcarrier spacing based on the 1-bit information being a first binary value, and the subcarrier spacing is the second subcarrier spacing based on the 1-bit information being a second binary value, and

wherein for the frequency band being in the second frequency range, the subcarrier spacing is the third subcarrier spacing based on the 1-bit information being the first binary value, and the subcarrier spacing is the fourth subcarrier spacing based on the 1-bit information being the second binary value.

17. The method according to claim 1 , wherein the first frequency range is at higher frequencies than the second frequency range.

18. The UE according to claim 11 , wherein the system information that is carried by the DL-CCH is remaining minimum system information (RMSI).

19. The UE according to claim 7 , wherein for the frequency band being in the first frequency range, the subcarrier spacing is the first subcarrier spacing based on the 1-bit information being a first binary value, and the subcarrier spacing is the second subcarrier spacing based on the 1-bit information being a second binary value, and

wherein for the frequency band being in the second frequency range, the subcarrier spacing is the third subcarrier spacing based on the 1-bit information being the first binary value, and the subcarrier spacing is the fourth subcarrier spacing based on the 1-bit information being the second binary value.

20. The UE according to claim 7 , wherein the first frequency range is at higher frequencies than the second frequency range.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2019
From: KO, HYUN SOO; KIM, KIJUN; KIM, EUNSUN; YOON, SUKHYON
To: LG ELECTRONICS INC.
Reel/Frame 049869/0505 →
Continuity (4)
Continuation 16065754
Provisional Application 62544212 · Aug 11, 2017
Provisional Application 62521263 · Jun 16, 2017
Related Publication 20190149383A1 · May 16, 2019
Cited By (1)
US 12,395,950