IP Library › Granted Patent US 11,064,515
Granted Patent B2
US 11,064,515 · App. 16/382,187 · Granted Jul 13, 2021

Physical uplink control channel (PUCCH) resource allocation

Inventors: Havish Koorapaty (Saratoga, CA); Sorour Falahati (Stockholm, SE); Robert Baldemair (Solna, SE); Daniel Larsson (Lund, SE)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04W72/1289H04L1/1819H04L5/0055H04W72/02H04W72/0406H04W72/0446H04W76/27H04W88/023
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Quick Facts
Patent No.
US 11,064,515
App. No.
16/382,187
Granted
Jul 13, 2021
Kind
B2
Abstract

Systems and methods for determining an uplink control channel resource to use for transmitting uplink control information to a network node are disclosed. In some embodiments, a method performed by a wireless device comprises receiving a first downlink control channel message that schedules a first downlink shared channel transmission, receiving a second downlink control channel message that schedules a second downlink shared channel transmission, and determining an uplink control channel resource to use for transmitting uplink control information to a network node. The uplink control information comprises Hybrid Automatic Repeat Request (HARQ) feedback for both the first downlink transmission and the second downlink transmission, and determining the uplink control channel resources for transmitting the uplink control information comprises determining the uplink control channel resources based on: (a) signaling received from the network node and (b) resource determination performed by the wireless device based on a latest received one of the first downlink control channel message and the second downlink control channel message. The method further comprises transmitting the uplink control information using the determined uplink control channel resource.

Claims (66)

1. A method performed by a wireless device, the method comprising:

receiving a first downlink control channel message that schedules a first downlink shared channel transmission;

receiving a second downlink control channel message that schedules a second downlink shared channel transmission;

determining an uplink control channel resource to use for transmitting uplink control information to a network node on an uplink control channel, wherein:

the uplink control information comprises Hybrid Automatic Repeat Request, HARQ, feedback for both the first downlink shared channel transmission and the second downlink shared channel transmission; and wherein

determining the uplink control channel resource for transmitting the uplink control information comprises determining the uplink control channel resource based on: (a) signaling received from the network node and (b) resource determination performed by the wireless device based on a latest received one of the first downlink control channel message and the second downlink control channel message; and transmitting the uplink control information using the determined uplink control channel resource.

2. The method of claim 1 wherein the uplink control channel is a physical uplink control channel.

3. The method of claim 1 wherein:

the signaling received from the network node comprises information that provides a semi-static configuration of two or more uplink control channel resource sets each comprising two or more uplink control channel resources; and

determining the uplink control channel resource based on: (a) the signaling received from the network node and (b) resource determination performed by the wireless device based on the latest received one of the first downlink control channel message and the second downlink control channel message comprises:

selecting one of the two or more uplink control channel resource sets;

selecting, as the uplink control channel resource to use for transmitting the uplink control information to the network node, one of the two or more uplink control channel resources from the selected uplink control channel resource set based on dynamic signaling from the network node.

4. The method of claim 3 wherein:

each of the first downlink control channel message and the second downlink control channel message comprises bits for use to select one of the two or more uplink control channel resources from the selected uplink control channel resource set; and wherein

selecting the one of the two or more uplink control channel resources comprises selecting based on the bits comprised in the latest received one of the first downlink control channel message and the second downlink control channel message.

5. The method of claim 1 , wherein determining the uplink control channel resource to use comprises determining the uplink control channel resource to use when the timing is variable between when the wireless device receives the first and second downlink control channel messages scheduling the first and second downlink shared channel transmissions and when the wireless device transmits the uplink control information.

6. The method of claim 1 , wherein determining the uplink control channel resource to use comprises determining the uplink control channel resource to use when the wireless device can receive the first and second downlink control channel messages scheduling the first and second downlink shared channel transmissions in any one of multiple control regions in the same slot.

7. A wireless device comprising:

an interface; and

processing circuitry configured to cause the wireless device to:

receive a first downlink control channel that schedules a first downlink shared channel transmission;

receive a second downlink control channel that schedules a second downlink shared channel transmission;

determine an uplink control channel resource to use for transmitting uplink control information to a network node, wherein:

the uplink control information comprises Hybrid Automatic Repeat Request, HARQ, feedback for both the first downlink shared channel transmission and the second downlink shared channel transmission; and

determining the uplink control channel resource for transmitting the uplink control information comprises determining the uplink control channel resource based on: (a) signaling received from the network node and (b) resource determination performed by the wireless device based on a latest received one of the first downlink control channel and the second downlink control channel; and

transmit the uplink control information using the determined uplink control channel resource.

8. The wireless device of claim 7 wherein the uplink control channel is a physical uplink control channel.

9. The wireless device of claim 7 , wherein:

the signaling received from the network node comprises information that provides a semi-static configuration of two or more uplink control channel resource sets each comprising two or more uplink control channel resources; and

determining the uplink control channel resource based on: (a) the signaling received from the network node and (b) resource determination performed by the wireless device based on the latest received one of the first downlink control channel message and the second downlink control channel message comprises:

selecting one of the two or more uplink control channel resource sets;

selecting, as the uplink control channel resource to use for transmitting the uplink control information to the network node, one of the two or more uplink control channel resources from the selected uplink control channel resource set based on dynamic signaling from the network node.

10. The wireless device of claim 9 wherein:

each of the first downlink control channel message and the second downlink control channel message comprises a downlink control information message comprising bits for use to select one of the two or more uplink control channel resources from the selected uplink control channel resource set; and

selecting the one of the two or more uplink control channel resources from the selected uplink control channel resource set based on dynamic signaling from the network node comprises selecting, as the uplink control channel resource to use for transmitting the uplink control information to the network node, the one of the two or more uplink control channel resources from the selected uplink control channel resource set based on the bits for use to select one of the two or more uplink control channel resources from the selected uplink control channel resource set that are comprised in the latest received one of the first downlink control channel message and the second downlink control channel message.

11. The wireless device of claim 7 , wherein determining the uplink control channel resource to use comprises determining the uplink control channel resource to use when the timing is variable between when the wireless device receives the first and second downlink control channel messages scheduling the first and second downlink shared channel transmissions and when the wireless device transmits the uplink control information.

12. The wireless device of claim 7 , wherein determining the uplink control channel resource to use comprises determining the uplink control channel resource to use when the wireless device can receive the first and second downlink control channel messages scheduling the first and second downlink shared channel transmissions in any one of multiple control regions in the same slot.

13. A wireless device comprising:

an interface; and

processing circuitry configured to cause the wireless device to:

receive a downlink control channel that schedules a downlink shared channel transmission to the wireless device;

determine an uplink control channel resource to use for transmitting uplink control information to a network node, wherein the uplink control information comprises Hybrid Automatic Repeat Request, HARQ, feedback for the downlink shared channel transmission and determining the uplink control channel resource comprises selecting the uplink control channel resource from uplink control channel resources in two or more uplink control channel resource sets based on:

a payload size of the uplink control information;

a starting control channel element index of a downlink control channel candidate on which the downlink control channel was received; and

dynamic signaling received from the network node; and

transmit the uplink control information using the determined uplink control channel resource.

14. The wireless device of claim 13 , wherein the processing circuitry is further configured to cause the wireless device to:

receive, from the network node, signaling comprising information that provides a semi-static configuration of two or more uplink control channel resource sets each comprising two or more uplink control channel resources,

wherein selecting the uplink control channel resource from the two or more uplink control channel resources in the two or more uplink control channel resource sets comprises:

selecting one of the two or more uplink control channel resource sets; and

selecting, as the uplink control channel resource to use for transmitting the uplink control information to the network node, one of the two or more uplink control channel resources from the selected uplink control channel resource set based on dynamic signaling from the network node.

15. The wireless device of claim 14 wherein:

the downlink control channel comprises a downlink control information message comprising bits for use to select one of the two or more uplink control channel resources from the selected uplink control channel resource set; and

selecting the one of the two or more uplink control channel resources from the selected uplink control channel resource set based on dynamic signaling from the network node comprises selecting, as the uplink control channel resource to use for transmitting the uplink control information to the network node, the one of the two or more uplink control channel resources from the selected uplink control channel resource set based on the bits for use to select one of the two or more uplink control channel resources from the selected uplink control channel resource set that are comprised in the downlink control channel.

16. The wireless device of claim 14 wherein the processing circuitry is further configured to cause the wireless device to:

receive, from the network node, signaling comprising information that provides a semi-static configuration of two or more uplink control channel resource sets each comprising two or more uplink control channel resources, and

wherein selecting the uplink control channel resource from the two or more uplink control channel resources in the two or more uplink control channel resource sets comprises:

selecting one of the two or more uplink control channel resource sets based on dynamic signaling from the network node; and

selecting, as the uplink control channel resource to use for transmitting the uplink control information to the network node, one of the two or more uplink control channel resources from the selected uplink control channel resource set using an implicit determination.

17. The wireless device of claim 16 wherein the implicit determination is based on a starting control channel element index of a downlink control channel candidate on which the downlink control channel was received, a search space in which the downlink control channel was received, or a CORESET in which the downlink control channel was received.

18. The wireless device of claim 14 wherein determining the uplink control channel resource to use comprises determining the uplink control channel resource to use when the timing is variable between when the wireless device receives the downlink control channel messages scheduling the downlink shared channel transmission and when the wireless device transmits the uplink control information.

19. The wireless device of claim 14 wherein determining the uplink control channel resource to use comprises determining the uplink control channel resource to use when the wireless device can receive the downlink control channel message scheduling the downlink shared channel transmission in any one of multiple control regions in the same slot.

20. The method of claim 1 , wherein determining the uplink control channel resource further comprises selecting the uplink control channel resource from uplink control channel resources in two or more uplink control channel resource sets based on:

a payload size of the uplink control information;

a starting control channel element index of the latest received one of the first downlink control channel message and the second downlink control channel message downlink control channel; and

dynamic signaling received from the network node.

Continuity (4)
Continuation 16203391 · Nov 28, 2018
Continuation PCTIB2018058400 · Oct 26, 2018
Provisional Application 62577578 · Oct 26, 2017
Related Publication 20190239247A1 · Aug 1, 2019
Cited By (1)
US 12,628,173