IP Library › Granted Patent US 11,690,046
Granted Patent B2
US 11,690,046 · App. 17/098,910 · Granted Jun 27, 2023

Multiple prose group communication during a sidelink control period

Inventors: Joachim Loehr (Hessen, DE); Prateek Basu Mallick (Hessen, DE); Lilei Wang (Beijing, CN)
Assignee: Panasonic Intellectual Propertv Corporation of America
H04W72/02H04W72/0453H04W72/23H04W76/14H04W88/04
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Quick Facts
Patent No.
US 11,690,046
App. No.
17/098,910
Granted
Jun 27, 2023
Kind
B2
Abstract

A method allocates radio resources for a transmitting user equipment (UE) to perform direct communication transmissions over a direct sidelink connection to one or more receiving UEs. At least two sidelink grant processes are provided in the transmitting UE for the transmitting UE to handle at least two sidelink grants within the same transmission control period. Each one of the sidelink grant processes is associated with an identification and can be associated with one sidelink grant. The transmitting UE acquires at least two sidelink grants and associates each of the acquired sidelink grants with one sidelink grant process. For each sidelink grant, the transmitting UE allocates radio resources according to the respective sidelink grant to perform a direct communication transmission of sidelink control information and of data over the direct sidelink connection. The transmitting UE performs a direct communication transmission per acquired sidelink grant within the same transmission control period.

Claims (27)

1. An integrated circuit, which is configured to control a process of a user equipment, wherein the process includes:

receiving sidelink grants;

associating the sidelink grants with sidelink processes, which are respectively associated with identifications (IDs);

determining radio resources allocated to the sidelink grants;

using a logical channel prioritization (LCP) procedure in common for all the sidelink grants to select one sidelink destination group including a logical channel associated with a highest priority, out of a plurality of sidelink destination groups including logical channels having data available for transmission and not previously selected within one transmission control period, as a destination of one of a plurality of direct communication transmissions;

generating sidelink control information that identifies the selected destination group and that identifies the radio resource allocated to the corresponding sidelink grant; and

performing the plurality of direct communication transmissions including the direct communication transmission destined to the selected sidelink destination group, wherein the plurality of direct communication transmissions of sidelink control information and data over a plurality of direct sidelink connections use the sidelink grants for the sidelink processes, respectively, within one transmission control period, wherein a maximum number of the sidelink processes executable in parallel is configured for the user equipment by a base station;

wherein the sidelink grants indicate time resource patterns, which define radio resources in a time domain, with different bitmap patterns between the plurality of direct communication transmissions.

2. The integrated circuit according to claim 1 , wherein the process includes:

transmitting the data using a next uplink subframe after an uplink subframe used to transmit the sidelink control information.

3. The integrated circuit according to claim 1 , wherein the maximum number of the sidelink processes executable in parallel is 8.

4. The integrated circuit according to claim 1 , wherein the identification (ID) is a destination group ID that identifies a sidelink destination group of a corresponding one of the plurality of direct communication transmissions.

5. The integrated circuit of claim 1 , comprising:

a memory device configured to store logic that embodies the process; and

one or more processing circuitry coupled to the memory device and configured to execute the logic to perform the process.

6. An integrated circuit configured to control operation of a user equipment, the integrated circuit comprising:

reception circuitry, which, in operation, controls reception of sidelink grants;

control circuitry, which is coupled to the reception circuitry and which, in operation:

associates the sidelink grants with sidelink processes, which are respectively associated with identifications (IDs);

determines radio resources allocated to the sidelink grants;

uses a logical channel prioritization (LCP) procedure in common for all the sidelink grants to select one sidelink destination group including a logical channel associated with a highest priority, out of a plurality of sidelink destination groups including logical channels having data available for transmission and not previously selected within one transmission control period, as a destination of one of a plurality of direct communication transmissions; and

generates sidelink control information that identifies the selected destination group and that identifies the radio resource allocated to the corresponding sidelink grant; and

transmission circuitry, which is coupled to the control circuitry and which, in operation, controls the plurality of direct communication transmissions including the direct communication transmission destined to the selected sidelink destination group, wherein the plurality of direct communication transmissions of sidelink control information and data over a plurality of direct sidelink connections use the sidelink grants for the sidelink processes, respectively, within said one transmission control period, wherein a maximum number of the sidelink processes executable in parallel is configured for the user equipment by a base station;

wherein the sidelink grants indicate time resource patterns, which define radio resources in a time domain, with different bitmap patterns between the plurality of direct communication transmissions.

7. The integrated circuit according to claim 6 , wherein the transmission circuitry, in operation, transmits the data using a next uplink subframe after an uplink subframe used to transmit the sidelink control information.

8. The integrated circuit according to claim 6 , wherein the maximum number of the sidelink processes executable in parallel is 8.

9. The integrated circuit according to claim 6 , wherein the identification (ID) is a destination group ID that identifies a sidelink destination group of a corresponding one of the plurality of direct communication transmissions.

Continuity (2)
Continuation 15567055
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