IP Library › Granted Patent US 12,143,974
Granted Patent B2
US 12,143,974 · App. 17/398,858 · Granted Nov 12, 2024

Transceiver device and scheduling device

Inventors: Quan Kuang (Langen, DE); Hidetoshi Suzuki (Kanagawa, JP); Hongchao Li (Langen, DE)
Assignee: Panasonic Intellectual Property Corporation of America
H04W72/0453H04L5/0094H04L5/0098H04W72/23
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Quick Facts
Patent No.
US 12,143,974
App. No.
17/398,858
Granted
Nov 12, 2024
Kind
B2
Abstract

The present disclosure provides a transceiver device and scheduling device, and communication methods for transceiver device and scheduling device. The transceiver device comprises a transceiver which, in operation, receives, over a physical downlink control channel (PDCCH), a sub-band occupancy indicator indicating sub-bands determined to be available for a transmission, and a resource allocation indicator indicating resources included in the available sub-bands and assigned to the transceiver device for the transmission. The transceiver device further comprises circuitry which, in operation, determines the assigned resources according to the resource allocation indicator and the sub-band occupancy indicator.

Claims (49)

1. A transceiver device, comprising:

a transceiver which, in operation, receives, over a physical downlink control channel (PDCCH),

a sub-band occupancy indicator indicating sub-bands determined to be available for a transmission; and

a resource allocation indicator indicating resources included in the available sub-bands and assigned to the transceiver device for the transmission; and

circuitry which, in operation, determines the assigned resources according to the resource allocation indicator and the sub-band occupancy indicator,

wherein,

the resource allocation indicator indicates resource blocks as the resources assigned to the transceiver device based on the available sub-bands indicated by the sub-band occupancy indicator, and

the circuitry, in operation, disregards a resource block assigned to the transceiver device according to the resource allocation indicator if the resource block is one of guard band resource blocks at edges of one or more contiguous available sub-bands.

2. The transceiver device according to claim 1 , wherein

the transceiver, in operation, receives:

the sub-band occupancy indicator via a group-common PDCCH and the resource allocation indicator via a PDCCH specific to the transceiver device,

or

both the sub-band occupancy indicator and the resource allocation indicator via a PDCCH specific to the transceiver device.

3. The transceiver device according to claim 1 , wherein

the resource allocation indicator indicates the resource blocks assigned to the transceiver device by a bitmap indicating resource block groups, each resource block group including at least one resource block within the available sub-bands; and

the circuitry, in operation, determines the number of resource blocks within each of the resource block groups according to the total number of resource blocks within the union of the available sub-bands.

4. The transceiver device according to claim 1 , wherein

the resource allocation indicator indicates the resource blocks assigned to the transceiver device by a bitmap indicating resource block groups within a single available sub-band from the available sub-bands, each resource block group including at least one resource block within said single available sub-band;

the circuitry, in operation,

determines the number of resource blocks within one of the resource block groups according to the total number of resource blocks within the single available sub-band; and

determines resource block group assignments of the other available sub-bands as equal to the resource block group assignments of the single available sub-band.

5. The transceiver according to claim 1 , wherein the resource allocation indicator indicates the resource blocks assigned to the transceiver device by a resource indication value indicating a starting resource block and a length in terms of continuously assigned resource blocks.

6. The transceiver device according to claim 1 , wherein the resource allocation indicator indicates the resource blocks assigned to the transceiver device by a resource indication value indicating a starting resource block and a length in terms of continuously assigned resource blocks within the available sub-bands with an increment in the length depending on the number of available sub-bands.

7. The transceiver device according to claim 1 , wherein

the resource allocation indicator indicates the resource blocks assigned to the transceiver device by a resource indication value indicating a starting resource block and a length in terms of continuously assigned resource blocks within a single available sub-band from among the available sub-bands; and

the circuitry, in operation, determines resource block assignments of the other available sub-bands as equal to the resource block assignments of the single available sub-band.

8. A scheduling device, comprising:

circuitry which, in operation, determines

a sub-band occupancy indicator indicating sub-bands determined to be available for a transmission; and

a resource allocation indicator indicating resources included in the available sub-bands and assigned to the transceiver device for the transmission; and

a transceiver which, in operation, transmits the sub-band occupancy indicator and the resource allocation indicator over a physical downlink control channel (PDCCH),

wherein,

the resource allocation indicator indicates resource blocks as the resources assigned to the transceiver device based on the available sub-bands indicated by the sub-band occupancy indicator, and

a resource block assigned to the transceiver device according to the resource allocation indicator is disregarded by the transceiver device if the resource block is one of guard band resource blocks at edges of one or more contiguous available sub-bands.

9. A method, comprising

receiving, over a physical download link control channel (PDCCH),

a sub-band occupancy indicator indicating sub-bands determined to be available for a transmission; and

a resource allocation indicator indicating resources included in the available sub-bands and assigned to a transceiver device for the transmission; and

determining the assigned resources according to the resource allocation indicator and the sub-band occupancy indicator,

wherein,

the resource allocation indicator indicates resource blocks as the resources assigned to the transceiver device based on the available sub-bands indicated by the sub-band occupancy indicator, and

a resource block assigned to the transceiver device according to the resource allocation indicator is disregarded by the transceiver device if the resource block is one of guard band resource blocks at edges of one or more contiguous available sub-bands.

10. A method, comprising

determining a sub-band occupancy indicator indicating sub-bands determined to be available for a transmission;

determining a resource allocation indicator indicating resources included in the available sub-bands and assigned to a transceiver device for the transmission; and

transmitting the sub-band occupancy indicator and the resource allocation indicator over a physical downlink control channel (PDCCH),

wherein,

the resource allocation indicator indicates resource blocks as the resources assigned to the transceiver device based on the available sub-bands indicated by the sub-band occupancy indicator, and

a resource block assigned to the transceiver device according to the resource allocation indicator is disregarded by the transceiver device if the resource block is one of guard band resource blocks at edges of one or more contiguous available sub-bands.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: KUANG, QUAN; SUZUKI, HIDETOSHI; LI, HONGCHAO
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 057149/0256 →
Priority Claims (1)
EP 19000086 · Feb 14, 2019 · regional
Continuity (2)
Continuation PCTEP2020051796 · Jan 24, 2020
Related Publication 20210368507A1 · Nov 25, 2021
Cited By (1)
US 12,700,959