IP Library › Granted Patent US 11,870,566
Granted Patent B2
US 11,870,566 · App. 17/825,688 · Granted Jan 9, 2024

Method and device for transmitting and receiving control information in wireless cellular communication system

Inventors: Sungjin Park (Gyeonggi-do, KR); Jinyoung Oh (Gyeonggi-do, KR); Taehyoung Kim (Gyeonggi-do, KR); Jonghyun Bang (Gyeonggi-do, KR); Jeongho Yeo (Gyeonggi-do, KR)
H04L1/0003H04L1/0061H04W8/24H04W72/0466H04W72/23H04W76/11
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Quick Facts
Patent No.
US 11,870,566
App. No.
17/825,688
Granted
Jan 9, 2024
Kind
B2
Abstract

The present disclosure relates to a communication technique for combining IoT technology with a 5G communication system for supporting a higher data transmission rate than 4G communication systems, and a system therefor. The present disclosure may be applied to intelligent services (e.g., smart home, smart building, smart city, smart car or connected car, healthcare, digital education, retail, security- and safety-related services, etc.) on the basis of 5G communication technology and IoT-related technology. The present disclosure relates to a method and device for transmitting and receiving control information.

Claims (76)

1. A method performed by a terminal in a wireless communication system, the method comprising:

transmitting, to a base station, capability information including information on a support capability of the terminal associated with a specific target block error rate (BLER);

receiving, from the base station, downlink control information (DCI) scheduling a physical uplink shared channel (PUSCH);

determining a modulation order and a target code rate for the PUSCH based on a modulation and coding scheme (MCS) table; and

transmitting, to the base station, the PUSCH based on the modulation order and the target code rate,

wherein a cyclic redundancy check (CRC) of the DCI scheduling the PUSCH is scrambled by a radio network temporary identifier (RNTI) which is associated with an ultra reliable and low latency communications (URLLC) service, and

wherein the MCS table is determined based on the RNTI scrambled to the CRC of the DCI.

2. The method of claim 1 , further comprising:

receiving, from the base station, information configuring a channel quality indicator (CQI) table associated with the specific target BLER by a higher layer signaling.

3. The method of claim 2 ,

wherein the specific target BLER is 10 −5 .

4. The method of claim 1 ,

wherein a plurality of MCS tables is pre-defined, and

wherein the MCS table is selected from the plurality of MCS tables based on the capability information and the RNTI.

5. The method of claim 2 , further comprising:

receiving, from the base station, DCI scheduling a physical downlink shared channel (PDSCH); and

receiving, from the base station, the PDSCH,

wherein, in case that a CRC of the DCI scheduling the PDSCH is scrambled by the RNTI associated with the MCS table, a modulation order and a target code rate for the PDSCH are determined based on the MCS table.

6. A method performed by a base station in a wireless communication system, the method comprising:

receiving, from a terminal, capability information including information on a support capability of the terminal associated with a specific target block error rate (BLER);

transmitting, to the terminal, downlink control information (DCI) scheduling a physical uplink shared channel (PUSCH); and

receiving the PUSCH from the terminal,

wherein a cyclic redundancy check (CRC) of the DCI scheduling the PUSCH is scrambled by a radio network temporary identifier (RNTI) which is associated with an ultra reliable and low latency communications (URLLC) service,

wherein a modulation order and a target code rate for the PUSCH are determined based on a modulation and coding scheme (MCS) table, and

wherein the MCS table is determined based on the RNTI scrambled to the CRC of the DCI.

7. The method of claim 6 , further comprising:

transmitting, to the terminal, information configuring a channel quality indicator (CQI) table associated with the specific target BLER by a higher layer signaling.

8. The method of claim 7 ,

wherein the specific target BLER is 10 −5 .

9. The method of claim 6 ,

wherein a plurality of MCS tables is pre-defined, and

wherein the MCS table is selected from the plurality of MCS tables based on the capability information and the RNTI.

10. The method of claim 7 , further comprising:

transmitting, to the terminal, DCI scheduling a physical downlink shared channel (PDSCH); and

transmitting the PUSCH to the terminal,

wherein, in case that a CRC of the DCI scheduling the PDSCH is scrambled by the RNTI associated with the MCS table, a modulation order and a target code rate for the PDSCH are determined based on the MCS table.

11. A terminal in a wireless communication system, the terminal comprising:

a transceiver configured to transmit and receive a signal; and

a controller coupled with the transceiver and configured to:

transmit, to a base station, capability information including information on a support capability of the terminal associated with a specific target block error rate (BLER);

receive, from the base station, downlink control information (DCI) scheduling a physical uplink shared channel (PUSCH);

determine a modulation order and a target code rate for the PUSCH based on a modulation and coding scheme (MCS) table; and

transmit, to the base station, the PUSCH based on the modulation order and the target code rate,

wherein a cyclic redundancy check (CRC) of the DCI scheduling the PUSCH is scrambled by a radio network temporary identifier (RNTI) which is associated with an ultra reliable and low latency communications (URLLC) service, and

wherein the MCS table is determined based on the RNTI scrambled to the CRC of the DCI.

12. The terminal of claim 11 , wherein the controller is further configured to:

receive, from the base station, information configuring a channel quality indicator (CQI) table associated with the specific target BLER by a higher layer signaling.

13. The terminal of claim 12 ,

wherein the specific target BLER is 10 −5 .

14. The terminal of claim 11 ,

wherein a plurality of MCS tables is pre-defined, and

wherein the MCS table is selected from the plurality of MCS tables based on the capability information and the RNTI.

15. The terminal of claim 12 , wherein the controller is further configured to:

receive, from the base station, DCI scheduling a physical downlink shared channel (PDSCH); and

receive the PDSCH from the base station,

wherein, in case that a CRC of the DCI scheduling the PDSCH is scrambled by the RNTI associated with the MCS table, a modulation order and a target code rate for the PDSCH are determined based on the MCS table.

16. A base station in a wireless communication system, the base station comprising:

a transceiver configured to transmit and receive a signal; and

a controller coupled with the transceiver and configured to:

receive, from a terminal, capability information including information on a support capability of the terminal associated with a specific target block error rate (BLER);

transmit, to the terminal, downlink control information (DCI) scheduling a physical uplink shared channel (PUSCH); and

receive the PUSCH from the terminal,

wherein a cyclic redundancy check (CRC) of the DCI scheduling the PUSCH is scrambled by a radio network temporary identifier (RNTI) which is associated with an ultra reliable and low latency communications (URLLC) service,

wherein a modulation order and a target code rate for the PUSCH are determined based on a modulation and coding scheme (MCS) table, and

wherein the MCS table is determined based on the RNTI scrambled to the CRC of the DCI.

17. The base station of claim 16 , wherein the controller is further configured to:

transmit, to the terminal, information configuring a channel quality indicator (CQI) table associated with the specific target BLER by a higher layer signaling.

18. The base station of claim 17 ,

wherein the specific target BLER is 10 −5 .

19. The base station of claim 16 ,

wherein a plurality of MCS tables is pre-defined, and

wherein the MCS table is selected from the plurality of MCS tables based on the capability information and the RNTI.

20. The base station of claim 17 , wherein the controller is further configured to:

transmit, to the terminal, DCI scheduling a physical downlink shared channel (PDSCH); and

transmit the PDSCH to the terminal,

wherein, in case that a CRC of the DCI scheduling the PDSCH is scrambled by the RNTI associated with the MCS table, a modulation order and a target code rate for the PDSCH are determined based on the MCS table.

Priority Claims (1)
KR 10-2018-0054223 · May 11, 2018 · national
Continuity (2)
Continuation 16980689
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