Abstract
A method and a device for transmitting an uplink control channel are provided. A user equipment (UE) receives downlink data which is scheduled by a downlink control channel from a network device where the downlink control channel is a downlink control channel corresponding to a serving cell the serving cell is a serving cell of at least two serving cells configured for the UE the at least two serving cells include one primary serving cell and at least one secondary serving cell. The UE selects identity information according to the downlink control channel. The UE generates a physical uplink control channel corresponding to the downlink data by using the selected identity information and transmits the physical uplink control channel on a channel resource of the physical uplink control channel.
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Specification Information
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CN104471999A | 5G | 05/08/2019 | ISLD-201908-008 | HUAWEI |
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US2015156768A1 | 5G | 05/08/2019 | ISLD-201908-008 | HUAWEI |
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Technologies
Power Control
Product
Base Station (eNB/gNB)
Use Cases
Services
Claim
1. A method for transmitting an uplink control channel, comprising:
receiving, by a user equipment (UE), downlink data which is scheduled by a downlink control channel from a network device, wherein the downlink control channel corresponds to a serving cell, the serving cell is one of at least two serving cells configured for the UE, the at least two serving cells comprise one primary serving cell and at least one secondary serving cell;
selecting identity information according to the downlink control channel;
generating a physical uplink control channel corresponding to the downlink data using the selected identity information; and
transmitting the physical uplink control channel on a channel resource of the physical uplink control channel by using transmit power, wherein
the transmit power is determined according to a value of path loss and a transmit power control (TPC) command in the downlink control channel; wherein
when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; and when the downlink control channel corresponds to the primary serving cell and the secondary serving cell, the path loss is second path loss;
or,
when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; and when the downlink control channel corresponds to the secondary serving cell and the primary serving cell, the path loss is first path loss.
2. The method according to claim 1, wherein,
when the downlink control channel does not correspond to the primary serving cell and corresponds to the secondary serving cell, the selected identity information is second identity information, generating the physical uplink control channel corresponding to the downlink data further comprises: generating the physical uplink control channel corresponding to the downlink data using the second identity information; or
when the downlink control channel corresponds to the primary serving cell, the selected identity information is first identity information, generating the physical uplink control channel corresponding to the downlink data further comprises: generating the physical uplink control channel corresponding to the downlink data using the first identity information.
3. The method according to claim 2, wherein
the first identity information is cell identity information corresponding to the primary serving cell;
when the downlink control channel corresponds to one secondary serving cell in the at least one secondary serving cell, the second identity information is cell identity information corresponding to the one secondary serving cell; or
when the downlink control channel corresponds to multiple secondary serving cells in the at least one secondary serving cell, selecting the second identity information further comprises: selecting, by the UE, the second identity information according to a predefined rule.
4. A method for receiving an uplink control channel, comprising:
transmitting, by a network device, downlink data scheduled by a downlink control channel to a user equipment (UE), wherein the downlink control channel corresponds to a secondary serving cell which corresponds to the network device, the secondary serving cell is one of at least two serving cells configured for the UE, the at least two serving cells further comprise a primary serving cell;
determining identity information which is used by the UE; and
detecting, using the identity information, a physical uplink control channel corresponding to the downlink data on a channel resource for feeding back the physical uplink control channel, wherein the physical uplink control channel is generated by the UE using the identity information and transmitted by the UE using transmit power of the physical uplink control channel, wherein the transmit power is determined by the UE according to a value of path loss and a transmit power control (TPC) command in the downlink control channel; wherein,
when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; and when the downlink control channel corresponds to the primary serving cell and the secondary serving cell, the path loss is second path loss;
or,
when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; and when the downlink control channel corresponds to the secondary serving cell and the primary serving cell the path loss is first path loss.
5. The method according to claim 4, wherein
the identity information comprises one of the groups consisting of:
(a) cell identity information corresponding to the primary serving cell, cell identity information corresponding to the secondary serving cell which corresponds to the network device, and identity information determined according to a predefined rule; and
(b) the cell identity information corresponding to the primary serving cell and cell identity information corresponding to all secondary serving cells configured for the UE.
6. The method according to claim 4, wherein
before detecting the physical uplink control channel corresponding to the downlink data, the method further comprises:
obtaining information of one channel resource or one group of channel resources of the physical uplink control channel;
wherein detecting the physical uplink control channel corresponding to the downlink data further comprises: detecting, using the identity information, the physical uplink control channel corresponding to the downlink data on the one channel resource or the one group of channel resources corresponding to the information of the one channel resource or the one group of channel resources and on the channel resource of the physical uplink control channel corresponding to the downlink control channel.
7. A user equipment (UE), comprises:
a receiver, configured to receive downlink data which is scheduled by a downlink control channel from a network device, where the downlink control channel corresponds to a serving cell, the serving cell is one of at least two serving cells configured for the UE, the at least two serving cells include one primary serving cell and at least one secondary serving cell;
a processor, configured to select identity information according to the downlink control channel corresponding to the downlink data received by the receiver, and generate a physical uplink control channel corresponding to the downlink data using the identity information; and
a transmitter, configured to transmit the physical uplink control channel on a channel resource of the physical uplink control channel generated by the processor by using transmit power, wherein
the transmit power is determined according to a value of path loss and a transmit power control (TPC) command in the downlink control channel; wherein,
when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; and when the downlink control channel corresponds to the primary serving cell and the secondary serving cell the path loss is second path loss;
or,
when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; and when the downlink control channel corresponds to the secondary serving cell and the primary serving cell, the path loss is first path loss.
8. The UE according to claim 7, wherein
the processor is configured to, when the downlink control channel does not correspond to the primary serving cell and corresponds to the secondary serving cell, select second identity information, and generate the physical uplink control channel corresponding to the downlink data by using the second identity information; and,
the processor is configured to, when the downlink control channel corresponds to the primary serving cell, select first identity information, and generate the physical uplink control channel corresponding to the downlink data using the first identity information.
9. The UE according to claim 8, wherein
the processor is configured to select the identity information in a following way: (a) selecting cell identity information corresponding to the primary serving cell as the first identity information;
(b) when the downlink control channel corresponds to one secondary serving cell in the at least one secondary serving cell, selecting cell identity information corresponding to the one secondary serving cell as the second identity information; or
(c) when the downlink control channel corresponds to multiple secondary serving cells in the at least one secondary serving cell, selecting the second identity information according to a predefined rule.
10. The UE according to claim 7, wherein
the processor is configured to, when the downlink control channel corresponds to the primary serving cell, select first identity information, and generate the physical uplink control channel corresponding to the downlink data by using the first identity information; and
the processor is configured to, when the downlink control channel corresponds to the secondary serving cell, select second identity information, and generate the physical uplink control channel corresponding to the downlink data by using the second identity information.
11. The UE according to claim 10, wherein
the processor is configured to select the identity information by one of the following:
(a) selecting cell identity information corresponding to the primary serving cell as the first identity information;
(b) when the downlink control channel corresponds to the primary serving cell and only one secondary serving cell in the at least one secondary serving cell, selecting cell identity information corresponding to the one secondary serving cell as the second identity information; and
(c) when the downlink control channel corresponds to multiple secondary serving cells in the at least one secondary serving cell, selecting the second identity information according to a predefined rule.
12. A network device, comprises:
a transmitter, configured to transmit downlink data scheduled by a downlink control channel to a user equipment (UE), where the downlink control channel corresponds to an secondary serving cell, or a primary serving cell which corresponds to the network device, the secondary serving cell is one of at least two serving cells configured for the UE, the at least two serving cells further include one primary serving cell;
a processor, configured to determine identity information which is used by the UE after the transmitter transmits the downlink data; and
a receiver, configured to, on a channel resource for feeding back a physical uplink control channel, detect the physical uplink control channel corresponding to the downlink data using the identity information, where the physical uplink control channel is generated by the UE using the identity information and transmitted by the UE using transmit power of the physical uplink control channel, wherein the transmit power is determined by the UE according to a value of path loss and a transmit power control (TPC) command in the downlink control channel; wherein,
when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; and when the downlink control channel corresponds to the primary serving cell and the secondary serving cell, the path loss is second path loss;
or,
when the downlink control channel only corresponds to the primary serving cell, the path loss is second path loss; when the downlink control channel only corresponds to the secondary serving cell, the path loss is first path loss; and when downlink control channel corresponds to the secondary serving cell and the primary serving cell, the path loss is first path loss.
13. The network device according to claim 12, wherein
the identity information determined by the processor comprises one of the groups consisting of: (a) cell identity information corresponding to the primary serving cell, cell identity information corresponding to the secondary serving cell which corresponds to the network device, and identity information determined according to a predefined rule; and
(b) the cell identity information corresponding to the primary serving cell and cell identity information corresponding to all secondary serving cells configured for the UE;
where the cell identity information is at least one of a cell identity and a virtual cell identity.
14. The network device according to claim 13, wherein
the processor is further configured to obtain information of one channel resource or one group of channel resources of the physical uplink control channel, and obtain a channel resource parameter of the downlink control channel corresponding to the downlink data transmitted by the transmitter;
the receiver is configured to detect the physical uplink control channel corresponding to the downlink data in a following way: detect, using the identity information, the physical uplink control channel corresponding to the downlink data on the one channel resource or the one group of channel resources corresponding to the information of the one channel resource or the one group of channel resources, where the information is obtained by the processor, and on the channel resource of the physical uplink control channel corresponding to the channel resource parameter obtained by the processor.
15. The method according to claim 1, wherein,
the first path loss is determined according to first transmit power and first receive power of a downlink reference signal transmitted by the secondary serving cell, wherein the first receive power is obtained through measuring, by the UE, the downlink reference signal transmitted by the secondary serving cell; and
the second path loss is determined according to second transmit power and second receive power of a downlink reference signal transmitted by the primary serving cell, wherein the second receive power is obtained through measuring, by the UE, the downlink reference signal transmitted by the primary serving cell.
16. The method according to claim 1, wherein,
when the UE transmits the physical uplink control channel on an uplink carrier corresponding to the primary serving cell, the second path loss is determined according to second transmit power and second receive power of a downlink reference signal transmitted by the primary serving cell, wherein the second receive power is obtained through measuring, by the UE, the downlink reference signal transmitted by the primary serving cell; the first path loss is determined according to first transmit power and first receive power of a downlink reference signal transmitted by the secondary serving cell and a power offset, wherein the first receive power is obtained through measuring, by the UE, the downlink reference signal transmitted by the secondary serving cell; or
when the UE transmits the physical uplink control channel on an uplink carrier corresponding to the secondary serving cell, the second path loss is determined according to second transmit power and second receive power of a downlink reference signal transmitted by the primary serving cell and a power offset, wherein the second receive power is obtained through measuring, by the UE, the downlink reference signal transmitted by the primary serving cell; the first path loss is determined according to first transmit power and first receive power of a downlink reference signal transmitted by the secondary serving cell, wherein the first receive power is obtained through measuring, by the UE, the downlink reference signal transmitted by the secondary serving cell.
17. The UE according to claim 7, wherein,
the processor is configured to determine the first path loss according to first transmit power and first receive power of a downlink reference signal transmitted by the secondary serving cell, wherein the first receive power is obtained through measuring, by the processor, the downlink reference signal transmitted by the secondary serving cell; and
the processor is configured to determine the second path loss according to second transmit power and second receive power of a downlink reference signal transmitted by the primary serving cell, wherein the second receive power is obtained through measuring, by the processor, the downlink reference signal transmitted by the primary serving cell.
18. The UE according to claim 7, wherein,
the processor is configured to, when the transmitter transmits the physical uplink control channel on an uplink carrier corresponding to the primary serving cell, determine the second path loss according to second transmit power and second receive power of a downlink reference signal transmitted by the primary serving cell, wherein the second receive power is obtained through measuring, by the processor, the downlink reference signal transmitted by the primary serving cell; determine the first path loss according to first transmit power and first receive power of a downlink reference signal transmitted by the secondary serving cell and a power offset, wherein the first receive power is obtained through measuring, by the processor, the downlink reference signal transmitted by the secondary serving cell; and
the processor is configured to, when the transmitter transmits the physical uplink control channel on an uplink carrier corresponding to the secondary serving cell, determine the second path loss according to second transmit power and second receive power of a downlink reference signal transmitted by the primary serving cell and a power offset, wherein the second receive power is obtained through measuring, by the processor, the downlink reference signal transmitted by the primary serving cell; determine the first path loss according to first transmit power and first receive power of a downlink reference signal transmitted by the secondary serving cell, wherein the first receive power is obtained through measuring, by the processor, the downlink reference signal transmitted by the secondary serving cell.
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Explicitly disclosed patent:openly and comprehensibly describes all details of the invention in the patent document.
Implicitly disclosed patent:does not explicitly state certain aspects of the invention, but still allows for these to be inferred from the information provided.
Basis patent:The core patent in a family, outlining the fundamental invention from which related patents or applications originate.
Family member:related patents or applications that share a common priority or original filing.