IP Library › Granted Patent US 11,647,491
Granted Patent B2
US 11,647,491 · App. 17/044,969 · Granted May 9, 2023

Bandwidth part switching

Inventors: Robert Baldemair (Solna, SE); Stefan Parkvall (Bromma, SE)
Assignee: Telefonaktiebolaget LM Ericsson (Publ)
H04W72/0453H04L5/00H04L5/0039H04L5/0053H04L5/0094H04W36/00H04W72/042
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Quick Facts
Patent No.
US 11,647,491
App. No.
17/044,969
Granted
May 9, 2023
Kind
B2
Abstract

Arrangement for switching between an active bandwidth part and the target bandwidth part are disclosed. A method includes selecting one or more resource blocks comprised in the target bandwidth part for a transmission or reception between the wireless device and the network node. The selected resource blocks to be used in the target bandwidth part are indicated in a resource allocation field of a downlink control channel information in the active bandwidth part. The allocation field includes information bits and the resource allocation field in the active bandwidth part and the information bits are configured based on a target bandwidth part resource allocation type. The target bandwidth part resource allocation type indicates whether the information bits have a bitmap corresponding to one or more resource block groups or an integer value corresponding to a starting resource block and a length of the allocation in resource blocks.

Claims (72)

1. A method performed by a wireless device for determining a target bandwidth part (BWP) resource allocation type for switching between an active BWP and the target BWP, the target BWP resource allocation type indicating whether the information bits of a resource allocation field in a downlink control information correspond to one of:

a bitmap corresponding at least one resource block group; and

an integer value corresponding to a starting position and a length of the allocation;

the method comprising:

receiving a resource allocation field in a downlink control information in the active BWP, the resource allocation field including information bits for allocating at least one resource block for the target BWP;

determining the resource allocation type based on a relationship between the resources allocated for the target BWP and resources allocated for the active BWP.

2. The method of claim 1 , wherein the relationship corresponds to a difference in a number of information bits in the resource allocation field of the downlink control information in the active BWP compared to a number of information bits in a resource allocation field for the target BWP.

3. The method of claim 1 , wherein:

the wireless device is configured for dynamic switching between resource allocation types for the target BWP; and

the target BWP resource allocation type being preconfigured to a value according to the relationship.

4. The method of claim 1 , wherein:

the wireless device is configured for dynamic switching between resource allocation types for the target BWP; and

the target BWP resource allocation type being indicated by a resource allocation type subfield of the resource allocation field in a downlink control information in the target BWP.

5. The method of claim 1 , further comprising:

interpreting the bits of the resource allocation field when the resource allocation field is one of truncated and padded.

6. The method of claim 1 , wherein:

the target BWP is configured for a greater number of resource blocks than the number configured for the active BWP;

the number of information bits available in the resource allocation field of the downlink control information in the active BWP being less than a number of information bits available in a resource allocation field in the target BWP; and

the bits of the resource allocation field being padded.

7. The method of claim 1 , wherein:

the target BWP being used to allocate a smaller number of resource blocks than allocated for the active BWP;

the number of information bits in the resource allocation field of the downlink control information in the active BWP being greater than a number of information bits in a resource allocation field in the target BWP; and

the remaining bits of the resource allocation field being truncated.

8. A method performed by a network node for indicating a target bandwidth part (BWP) resource allocation type for switching between an active BWP and the target BWP, the target BWP resource allocation type indicating whether information bits of a resource allocation field in a downlink control information correspond to one of:

a bitmap corresponding to at least one resource block group; and

an integer value corresponding to a starting position and a length of the allocation;

the method comprising:

determining a target BWP resource allocation type based on a relationship between resources allocated for the target BWP and resources allocated for the active BWP; and

indicating to a wireless device a resource allocation in a field of a downlink control channel information in the active BWP, the allocation field including information bits configured according to the target BWP resource allocation type.

9. The method of claim 8 , wherein the relationship corresponds to a difference in a number of information bits in the resource allocation field of the downlink control information in the active BWP compared to a number of information bits in a resource allocation field for the target BWP.

10. The method of claim 8 , wherein the wireless device is configured for dynamic switching between resource allocation types for the target BWP, the target BWP resource allocation type being one of:

preconfigured to a value according to the relationship; and

indicated by a resource allocation type subfield of the resource allocation field in a downlink control information in the target BWP.

11. The method of claim 8 , wherein the target BWP is one of:

configured for a greater number of resource blocks than the number configured for the active BWP, the number of information bits available in the resource allocation field of the downlink control information in the active BWP being less than a number of information bits available in a resource allocation field in the target BWP, the bits of the resource allocation field being padded; and

used to allocate a smaller number of resource blocks than allocated for the active BWP, the number of information bits in the resource allocation field of the downlink control information in the active BWP being greater than a number of information bits in a resource allocation field in the target BWP, the remaining bits of the resource allocation field being truncated.

12. A wireless device for determining a target bandwidth part (BWP) resource allocation type for switching between an active BWP and the target BWP, the target BWP resource allocation type indicating whether the information bits of a resource allocation field in a downlink control information correspond to one of:

a bitmap corresponding to at least one resource block group; and

an integer value corresponding to a starting position and a length of the allocation;

the wireless device comprising processing circuitry configured to:

receive a resource allocation field in a downlink control information in the active BWP, the resource allocation field including information bits for allocating one or more resource blocks for the target BWP;

determine the resource allocation type based on a relationship between the resources allocated for the target BWP and the resources allocated for the active BWP.

13. The wireless device of claim 12 , wherein the relationship corresponds to a difference in a number of information bits in the resource allocation field of the downlink control information in the active BWP compared to a number of information bits in a resource allocation field for the target BWP.

14. The wireless device of claim 12 , wherein:

the wireless device is configured for dynamic switching between resource allocation types for the target BWP; and

the target BWP resource allocation type being preconfigured to a value according to the relationship.

15. The wireless device of claim 12 , wherein:

the wireless device is configured for dynamic switching between resource allocation types for the target BWP; and

the target BWP resource allocation type being indicated by a resource allocation type subfield of the resource allocation field in a downlink control information in the target BWP.

16. The wireless device of claim 12 , the processing circuitry being further configured to:

interpret the bits of the resource allocation field when the resource allocation field is one of truncated and padded.

17. The wireless device of claim 12 , wherein:

the target BWP is configured for a greater number of resource blocks than the number configured for the active BWP;

the number of information bits available in the resource allocation field of the downlink control information in the active BWP being less than a number of information bits available in a resource allocation field in the target BWP; and

the bits of the resource allocation field being padded.

18. The wireless device of claim 12 , wherein:

the target BWP being used to allocate a smaller number of resource blocks than allocated for the active BWP;

the number of information bits in the resource allocation field of the downlink control information in the active BWP being greater than a number of information bits in a resource allocation field in the target BWP; and

the remaining bits of the resource allocation field being truncated.

19. A network node for indicating a target bandwidth part (BWP) resource allocation type for switching between an active BWP and the target BWP, the target BWP resource allocation type indicating whether information bits of a resource allocation field in a downlink control information correspond to one of:

a bitmap corresponding to at least one resource block group; and

an integer value corresponding to a starting position and a length of the allocation;

the network node comprising processing circuitry configured to:

determine a target BWP resource allocation type based on a relationship between resources allocated for the target BWP and the resources allocated for the active BWP; and

indicate to a wireless device a resource allocation in a field of a downlink control channel information in the active BWP, the allocation field including information bits configured according to the target BWP resource allocation type.

20. The network node of claim 19 , wherein the relationship corresponds to a difference in a number of information bits in the resource allocation field of the downlink control information in the active BWP compared to a number of information bits in a resource allocation field for the target BWP.

21. The network node of claim 19 , wherein the wireless device is configured for dynamic switching between resource allocation types for the target BWP, the target BWP resource allocation type being one of:

preconfigured to a value according to the relationship; and

indicated by a resource allocation type subfield of the resource allocation field in a downlink control information in the target BWP.

22. The network node of claim 19 , wherein the target BWP is one of:

configured for a greater number of resource blocks than the number configured for the active BWP, the number of information bits available in the resource allocation field of the downlink control information in the active BWP being less than a number of information bits available in a resource allocation field in the target BWP, the bits of the resource allocation field being padded; and

used to allocate a smaller number of resource blocks than allocated for the active BWP, the number of information bits in the resource allocation field of the downlink control information in the active BWP being greater than a number of information bits in a resource allocation field in the target BWP, the remaining bits of the resource allocation field being truncated.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2020
From: BALDEMAIR, ROBERT; PARKVALL, STEFAN
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 054003/0767 →
Continuity (2)
Provisional Application 62653566 · Apr 6, 2018
Related Publication 20210258926A1 · Aug 19, 2021
Cited By (1)
US 12,335,934