IP Library Granted Patent US 10,820,313
Granted Patent B2
US 10,820,313 · App. 16/270,677 · Granted Oct 27, 2020

Method for sending control information, apparatus, and system

Inventors: Jiafeng Shao (Beijing, CN); Chaojun Li (Beijing, CN); Sha Ma (Beijing, CN)
Assignee: Huawei Technologies Co., Ltd.
H04W72/044H04L5/0048H04L5/0057H04L5/0082H04L5/0091H04W72/042H04L5/0005
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Quick Facts
Patent No.
US 10,820,313
App. No.
16/270,677
Granted
Oct 27, 2020
Kind
B2
Abstract

A method for sending control information includes: determining, by a network device based on a first time-frequency domain resource for sending first control information, at least one information field included in the first control information; determining, by the network device, a quantity of bits of the first control information based on the at least one information field; and sending, by the network device, the first control information to a user terminal on the first time-frequency domain resource based on the quantity of bits of the first control information. The present application can improve data transmission efficiency.

Claims (60)

1. A method for sending control information, the method comprising:

determining, by a network device, at least one information field comprised in first control information based on a first time-frequency domain resource for sending the first control information;

determining, by the network device, a quantity of bits of the first control information based on the at least one information field; and

sending, by the network device, the first control information to a user terminal on the first time-frequency domain resource based on the quantity of bits of the first control information;

wherein the first time-frequency domain resource is a time-frequency domain resource beyond a first time region;

wherein the at least one information field comprises a second information field;

wherein information carried in the second information field indicates:

a time-frequency domain resource not occupied by a downlink control channel, or

a time-frequency domain resource occupied by a downlink control channel, or

a time-frequency domain resource occupied by a downlink data channel; and

wherein the first time region is a time region to which first two symbols in a downlink subframe belong, or is a time region to which first three symbols in a downlink subframe belong, or is a physical downlink control channel (PDCCH) region.

2. The method according to claim 1 , wherein the information carried in the second information field indicates the time-frequency domain resource occupied by the downlink control channel, and the information carried in the second information field comprises:

control channel elements (CCEs) occupied by the downlink control channel which carries downlink control information (DCI) in a transmission time period, wherein the transmission time period is shorter than or equal to 0.5 ms (milliseconds).

3. The method according to claim 1 , wherein the first time-frequency domain resource is a time-frequency domain resource in a transmission time period that is shorter than or equal to 0.5 ms (milliseconds).

4. A method for detecting control information, the method comprising:

determining, by a user terminal, at least one information field comprised in first control information based on a first time-frequency domain resource for detecting the first control information;

determining, by the user terminal, a quantity of bits of the first control information based on the at least one information field;

detecting, by the user terminal, the first control information on the first time-frequency domain resource based on the quantity of bits of the first control information; and

receiving, by the user terminal, the first control information after detecting the first control information;

wherein the first time-frequency domain resource is a time-frequency domain resource beyond a first time region;

wherein the at least one information field comprises a second information field;

wherein information carried in the second information field indicates:

a time-frequency domain resource not occupied by a downlink control channel, or

a time-frequency domain resource occupied by a downlink control channel, or

a time-frequency domain resource occupied by a downlink data channel; and

wherein the first time region is a time region to which first two symbols in a downlink subframe belong, or is a time region to which first three symbols in a downlink subframe belong, or is a physical downlink control channel (PDCCH) region.

5. The method according to claim 4 , wherein the information carried in the second information field indicates the time-frequency domain resource occupied by the downlink control channel, and the information carried in the second information field comprises:

control channel elements (CCEs) occupied by the downlink control channel which carries downlink control information (DCI) in a transmission time period, wherein the transmission time period is shorter than or equal to 0.5 ms (milliseconds).

6. The method according to claim 4 , wherein the first time-frequency domain resource is a time-frequency domain resource in a transmission time period that is shorter than or equal to 0.5 ms (milliseconds).

7. A network device, comprising:

a processor, configured to:

determine, based on a first time-frequency domain resource for sending first control information, at least one information field comprised in the first control information; and

determine a quantity of bits of the first control information based on the at least one information field; and

a sending circuit, configured to send the first control information to a user terminal on the first time-frequency domain resource based on the quantity of bits of the first control information;

wherein the first time-frequency domain resource is a time-frequency domain resource beyond a first time region;

wherein the at least one information field comprises a second information field;

wherein information carried in the second information field indicates:

a time-frequency domain resource not occupied by a downlink control channel, or

a time-frequency domain resource occupied by a downlink control channel; or

a time-frequency domain resource occupied by a downlink data channel, and

wherein the first time region is a time region to which first two symbols in a downlink subframe belong, or is a time region to which first three symbols in a downlink subframe belong, or is a physical downlink control channel (PDCCH) region.

8. The network device according to claim 7 , wherein the information carried in the second information field indicates the time-frequency domain resource occupied by the downlink control channel, and the information carried in the second information field comprises:

control channel elements (CCEs) occupied by the downlink control channel which carries downlink control information (DCI) in a transmission time period, wherein the transmission time period is shorter than or equal to 0.5 ms (milliseconds).

9. The network device according to claim 7 , wherein the first time-frequency domain resource is a time-frequency domain resource in a transmission time period that is shorter than or equal to 0.5 ms (milliseconds).

10. A user terminal, comprising:

a processor, configured to:

determine, based on a first time-frequency domain resource for detecting first control information, at least one information field comprised in the first control information; wherein

determine a quantity of bits of the first control information based on the at least one information field;

detect the first control information on the first time-frequency domain resource based on the quantity of bits of the first control information; and

a receiving circuit, configured to receive the first control information after the processor detects the first control information;

wherein the first time-frequency domain resource is a time-frequency domain resource beyond a first time region;

wherein the at least one information field comprises a second information field;

wherein information carried in the second information field indicates:

a time-frequency domain resource not occupied by a downlink control channel, or

a time-frequency domain resource occupied by a downlink control channel, or

a time-frequency domain resource occupied by a downlink data channel; and

wherein the first time region is a time region to which first two symbols in a downlink subframe belong, or is a time region to which first three symbols in a downlink subframe belong, or is a physical downlink control channel (PDCCH) region.

11. The user terminal according to claim 10 , wherein the information carried in the second information field indicates the time-frequency domain resource occupied by the downlink control channel, and the information carried in the second information field comprises:

control channel elements (CCEs) occupied by the downlink control channel which carries downlink control information (DCI) in a transmission time period, wherein the transmission time period is shorter than or equal to 0.5 ms (milliseconds).

12. The user terminal according to claim 10 , wherein the first time-frequency domain resource is a time-frequency domain resource in a transmission time period that is shorter than or equal to 0.5 ms (milliseconds).

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2024
From: HUAWEI TECHNOLOGIES CO., LTD.
To: GODO KAISHA IP BRIDGE 1
Reel/Frame 067782/0405 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 27, 2020
From: SHAO, JIAFENG; LI, CHAOJUN; MA, SHA
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 051633/0966 →
Continuity (2)
Continuation PCTCN2016095067 · Aug 12, 2016
Related Publication 20190246384A1 · Aug 8, 2019