IP Library › Granted Patent US 11,950,307
Granted Patent B2
US 11,950,307 · App. 17/288,434 · Granted Apr 2, 2024

Efficient handling of a resource control state change and multi-node connectivity

Inventors: Chih-Hsiang Wu (Taoyuan, TW); Teming Chen (Taipei, TW)
Assignee: Google LLC
H04W76/16H04W76/19H04W76/27H04W76/30
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,950,307
App. No.
17/288,434
Filed
Apr 23, 2021
Granted
Apr 2, 2024
Kind
B2
Examiner
LIN, WILL W
Art Unit
2412
USPC
370/329
Abstract

This document describes techniques and devices for efficient handling of a resource control state change and multi-node connectivity. Instead of performing multiple radio resource control (RRC) procedures to change a resource control state of a user equipment (UE) and establish, modify, or release a connection with multi-node connectivity, the techniques described herein combine the multiple RRC procedures into a single RRC procedure that supports both a resource control state change and multi-node connectivity. In particular, a master node sends a resource control state and multi-node connectivity message that includes both state change information and multi-node connectivity information. With this single message, timing and power resources of the UE can be conserved and failures resulting from asynchronous communication of the state change information and the multi-node connectivity information can be avoided.

Claims (79)

1. A base station comprising:

a radio-frequency transceiver;

a processor and memory system configured to direct the base station to:

operate as a master node for multi-node connectivity with a user equipment and a secondary node;

prior to sending a first resource control state and multi-node connectivity message, suspend a connection associated with the multi-node connectivity and directing the user equipment to transition from a connected state to an inactive state; and

send the first resource control state and multi-node connectivity message to the user equipment, the first resource control state and multi-node connectivity message including:

state change information to direct the user equipment to transition from the inactive state to the connected state and the state change information includes a connection resume information element to direct the user equipment to transition from the inactive state to the connected state; and

multi-node connectivity information including a full secondary cell group configuration to direct the user equipment to modify a previously-stored secondary cell group configuration based on the secondary cell group configuration.

2. The base station of claim 1 , the processor and memory system configured to direct the base station to:

receive the secondary cell group configuration from the secondary node,

wherein the secondary cell group configuration directs the user equipment to reconnect with the multi-node connectivity to the master node and the secondary node.

3. The base station of claim 2 , wherein:

the secondary cell group configuration directs the user equipment to replace the previously stored secondary cell group configuration with the full secondary cell group configuration.

4. The base station of claim 1 , the processor and memory system configured to direct the base station to:

send, to another secondary node, a secondary node request message to direct the other secondary node to provide the secondary cell group configuration; and

receive, from the other secondary node, a secondary node response message with the secondary cell group configuration,

wherein the secondary cell group configuration directs the user equipment to connect with the multi-node connectivity to the master node and the other secondary node.

5. The base station of claim 1 , the processor and memory system further configured to direct the base station to:

send a second resource control state and multi-node connectivity message to the user equipment, the second resource control state and multi-node connectivity message including:

other state change information to direct the user equipment to transition from the second resource control state to the first resource control state, the other state change information including connection suspend information; and

other multi-node connectivity information including a multi-node connectivity release indicator to direct the user equipment to release a connection associated with the multi-node connectivity and connect without the multi-node connectivity to the master node.

6. The base station of claim 1 , wherein the secondary cell group configuration comprises a random access configuration, that directs the user equipment to perform a random access procedure with the secondary node based on the random access configuration.

7. A method performed by a user equipment, the method comprising:

connecting with multi-node connectivity to a master node and a secondary node;

receiving, from the master node, a first resource control state and multi-node connectivity message, the first resource control state and multi-node connectivity message including state change information and multi-node connectivity information, the multi-node connectivity information including at least one secondary cell group configuration;

transitioning from a first resource control state to a second resource control state based on the state change information; and

modifying a previously-stored secondary cell group configuration based on the at least one secondary cell group configuration.

8. The method of claim 7 , further comprising:

prior to receiving the first resource control state and multi-node connectivity message, transitioning from a connected state to an inactive state, wherein:

the state change information includes connection resume information;

the first resource control state comprises the inactive state; and

the second resource control state comprises the connected state.

9. The method of claim 7 , further comprising:

reconnecting with the multi-node connectivity to the master node and the secondary node based on the at least one secondary cell group configuration.

10. The method of claim 7 , wherein:

the at least one secondary cell group configuration comprises a random access configuration,

the method further comprising:

performing a random access procedure with the secondary node based on the random access configuration.

11. The method of claim 7 , wherein:

the at least one secondary cell group configuration comprises at least one full secondary cell group configuration; and

the modifying the previously-stored secondary cell group configuration comprises replacing the previously-stored secondary cell group configuration with the at least one full secondary cell group configuration.

12. The method of claim 7 , wherein:

the at least one secondary cell group configuration comprises at least one delta secondary cell group configuration; and

the modifying the previously-stored secondary cell group configuration comprises modifying a portion of the previously-stored secondary cell group configuration based on the delta secondary cell group configuration.

13. The method of claim 7 , further comprising:

receiving a second resource control state and multi-node connectivity message, the second resource control state and multi-node connectivity message including other state change information and other multi-node connectivity information, the other state change information comprising connection suspend information; the other multi-node connectivity information including a multi-node connectivity release indicator;

transitioning from the second resource control state to the first resource control state based on the connection suspend information; and

releasing a connection associated with the multi-node connectivity based on the multi-node connectivity release indicator; and

connecting without multi-node connectivity to the master node.

14. The method of claim 7 , further comprising:

sending, to a second master node, a connection resume request message, wherein:

the receiving of the first resource control state and multi-node connectivity message comprises receiving the first resource control state and multi-node connectivity message from the second master node; and

the at least one secondary cell group configuration is associated with the secondary node or another secondary node,

the method further comprising:

connecting with the multi-node connectivity to the second master node and either the secondary node or the other secondary node based on the at least one secondary cell group configuration.

15. A user equipment comprising:

a radio-frequency transceiver; and

a processor and memory system that configure the user equipment to:

connect with multi-node connectivity to a master node and a secondary node;

receive, from the master node, a first resource control state and multi-node connectivity message, the first resource control state and multi-node connectivity message including state change information and multi-node connectivity information, the multi-node connectivity information including at least one secondary cell group configuration;

transition from a first resource control state to a second resource control state based on the state change information; and

modify a previously-stored secondary cell group configuration based on the at least one secondary cell group configuration.

16. The user equipment of claim 15 , the processor and memory system further configure the user equipment to:

prior to reception of the first resource control state and multi-node connectivity message, transition from a connected state to an inactive state, wherein:

the state change information includes connection resume information;

the first resource control state comprises the inactive state; and

the second resource control state comprises the connected state.

17. The user equipment of claim 15 , the processor and memory system further configure the user equipment to:

reconnect with the multi-node connectivity to the master node and the secondary node based on the at least one secondary cell group configuration.

18. The user equipment of claim 15 , wherein:

the at least one secondary cell group configuration comprises a random access configuration,

the processor and memory system further configure the user equipment to:

perform a random access procedure with the secondary node based on the random access configuration.

19. The user equipment of claim 15 , wherein:

the at least one secondary cell group configuration comprises at least one full secondary cell group configuration; and

the modification of the previously-stored secondary cell group configuration comprises replacing the previously-stored secondary cell group configuration with the at least one full secondary cell group configuration.

20. The user equipment of claim 15 , wherein:

the at least one secondary cell group configuration comprises at least one delta secondary cell group configuration; and

the modification of the previously-stored secondary cell group configuration comprises modifying a portion of the previously-stored secondary cell group configuration based on the delta secondary cell group configuration.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2021
From: WU, CHIH-HSIANG; CHEN, TEMING
To: GOOGLE LLC
Reel/Frame 056026/0347 →
Continuity (2)
Provisional Application 62750891 · Oct 26, 2018
Related Publication 20220015173A1 · Jan 13, 2022