IP Library Granted Patent US 11,737,013
Granted Patent B2
US 11,737,013 · App. 16/120,431 · Granted Aug 22, 2023

Method, terminal device, and network side device for accessing network side device

Inventors: Qinghai Zeng (Shanghai, CN); Yada Huang (Shanghai, CN); Jian Zhang (Shenzhen, CN); Lifeng Han (Shenzhen, CN)
Assignee: HUAWEI TECHNOLOGIES CO., LTD.
H04W48/18H04W8/02
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Quick Facts
Patent No.
US 11,737,013
App. No.
16/120,431
Granted
Aug 22, 2023
Kind
B2
Abstract

A communication method includes: receiving, by a terminal device, sub-network information of a RAN sent by a network side device, where the sub-network information is used to indicate at least one RAN sub-network included in the RAN; accessing, by the terminal device, a target RAN sub-network among the at least one RAN sub-network based on a service requirement of the terminal device; and communicating, by the terminal device, with the network side device by using the target RAN sub-network.

Claims (30)

1. A communication method, comprising:

obtaining, by a terminal device from a radio access network (RAN), availability information of a service supported by a first sub-network;

selecting, by the terminal device, the first sub-network as a target sub-network for forming a network slice among at least one sub-networks of the RAN based on the availability information of the service supported by the first sub-network;

accessing, by the terminal device, the target sub-network based on a service requirement of the terminal device; and

communicating, by the terminal device, with a network side device by using the target RAN sub-network, wherein a plurality of RAN sub-networks accessed by the terminal device comprise the target RAN sub-network, wherein a plurality of radio bearers established for the terminal device are mapped to the plurality of RAN sub-networks respectively, wherein the target RAN sub-network corresponds to a core-net (CN) sub-network, wherein the target RAN sub-network and the CN sub-network form the network slice that satisfies the service requirement, wherein the plurality of RAN sub-networks correspond to a plurality of CN sub-networks respectively, wherein the plurality of RAN sub-networks and the plurality of CN sub-networks form a plurality of network slices respectively, wherein the plurality of network slices use a uniform mobility management manner for the terminal device, wherein the uniform mobility management manner comprises a uniform mobility management function for a plurality of terminal devices, wherein the target RAN sub-network comprises at least one of the following: a physical layer protocol layer, a media access control protocol layer, a radio link control protocol layer, or a packet data convergence protocol layer, and wherein the RAN sub-network shares one or more of the following functions with other RAN sub-network: a scheduling function of a MAC layer protocol, a function of multiplexing, a function of demultiplexing, a function of random access, a function of HARQ control, or a function of logical channel prioritization;

wherein the accessing, by the terminal device, the target sub-network based on the service requirement of the terminal device includes:

determining, by the terminal device, the target sub-network based on the service requirement;

detecting, by the terminal device, a synchronization signal of the target sub-network; and

accessing, by the terminal device, the target sub-network based on the synchronization signal.

2. An apparatus applied for a terminal device, comprising:

at least one processor; and

a memory storing instructions, wherein the instructions instruct the at least one processor to perform operations comprising:

obtaining from a radio access network (RAN), availability information of a service supported by a first sub-network;

selecting the first sub-network as a target sub-network for forming a network slice among at least one sub-networks of the RAN based on the availability information of the service supported by the first sub-network;

accessing, the target sub-network based on a service requirement of the terminal device; and

communicating with a network side device by using the target RAN sub-network, wherein a plurality of RAN sub-networks accessed by the terminal device comprise the target RAN sub-network, wherein a plurality of radio bearers established for the terminal device are mapped to the plurality of RAN sub-networks respectively, wherein the target RAN sub-network corresponds to a core-net (CN) sub-network, wherein the target RAN sub-network and the CN sub-network form the network slice that satisfies the service requirement, wherein the plurality of RAN sub-networks correspond to a plurality of CN sub-networks respectively, wherein the plurality of RAN sub-networks and the plurality of CN sub-networks form a plurality of network slices respectively, wherein the plurality of network slices use a uniform mobility management manner for the terminal device, wherein the uniform mobility management manner comprises a uniform mobility management function for a plurality of terminal devices, wherein the target RAN sub-network comprises at least one of the following: a physical layer protocol layer, a media access control protocol layer, a radio link control protocol layer, or a packet data convergence protocol layer, and wherein the target RAN sub-network shares one or more of the following functions with other RAN sub-network: a scheduling function of a MAC layer protocol, a function of multiplexing, a function of demultiplexing, a function of random access, a function of HARQ control, or a function of logical channel prioritization;

wherein the accessing the target sub-network based on a service requirement of the terminal device includes:

determining the target sub-network based on the service requirement;

detecting a synchronization signal of the target sub-network; and

accessing the target sub-network based on the synchronization signal.

3. A communication method, comprising:

providing, by a radio access network (RAN), availability information of a service supported by a first sub-network to a terminal device, wherein the availability information is used for selecting the first sub-network as a target sub-network for forming a network slice among at least one sub-networks of the RAN,

wherein the target RAN sub-network is determined based on the service requirement, and the target RAN sub-network is accessed based on a synchronization signal of the target RAN sub-network; and

communicating, by the RAN, with the terminal device via the target sub-network that is accessed by the terminal device, wherein a plurality of RAN sub-networks accessed by the terminal device comprise the target RAN sub-network, wherein a plurality of radio bearers established for the terminal device are mapped to the plurality of RAN sub-networks respectively, wherein the target RAN sub-network corresponds to a core-net (CN) sub-network, wherein the target RAN sub-network and the CN sub-network form the network slice that satisfies the service requirement, wherein the plurality of RAN sub-networks correspond to a plurality of CN sub-networks respectively, wherein the plurality of RAN sub-networks and the plurality of CN sub-networks form a plurality of network slices respectively, wherein the plurality of network slices use a uniform mobility management manner for the terminal device, wherein the uniform mobility management manner comprises a uniform mobility management function for a plurality of terminal devices, wherein the target RAN sub-network comprises at least one of the following: a physical layer protocol layer, a media access control protocol layer, a radio link control protocol layer, or a packet data convergence protocol layer, and wherein the target RAN sub-network shares one or more of the following functions with other RAN sub-network: a scheduling function of a MAC layer protocol, a function of multiplexing, a function of demultiplexing, a function of random access, a function of HARQ control, or a function of logical channel prioritization.

4. An apparatus applied for a radio access network (RAN), comprising:

at least one processor; and

a memory storing instructions, wherein the instructions instruct the at least one processor to perform operations comprising:

providing, availability information of a service supported by a first sub-network to a terminal device, wherein the availability information is used for selecting the first sub-network as a target sub-network for forming a network slice among at least one sub-networks of the RAN,

wherein the target RAN sub-network is determined based on the service requirement, and the target RAN sub-network is accessed based on a synchronization signal of the target RAN sub-network; and

communicating, with the terminal device via the target sub-network that is accessed by the terminal device, wherein a plurality of RAN sub-networks accessed by the terminal device comprise the target RAN sub-network, wherein a plurality of radio bearers established for the terminal device are mapped to the plurality of RAN sub-networks respectively, wherein the target RAN sub-network corresponds to a core-net (CN) sub-network, wherein the target RAN sub-network and the CN sub-network form the network slice that satisfies the service requirement, wherein the plurality of RAN sub-networks correspond to a plurality of CN sub-networks respectively, wherein the plurality of RAN sub-networks and the plurality of CN sub-networks form a plurality of network slices respectively, wherein the plurality of network slices use a uniform mobility management manner for the terminal device, wherein the uniform mobility management manner comprises a uniform mobility management function for a plurality of terminal devices, wherein the target RAN sub-network comprises at least one of the following: a physical layer protocol layer, a media access control protocol layer, a radio link control protocol layer, or a packet data convergence protocol layer, and wherein the target RAN sub-network shares one or more of the following functions with other RAN sub-network: a scheduling function of a MAC layer protocol, a function of multiplexing, a function of demultiplexing, a function of random access, a function of HARQ control, or a function of logical channel prioritization.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2019
From: ZENG, QINGHAI; HUANG, YADA; ZHANG, JIAN; HAN, LIFENG
To: HUAWEI TECHNOLOGIES CO., LTD.
Reel/Frame 048825/0173 →
Priority Claims (1)
CN 201610120649.6 · Mar 3, 2016 · national
Continuity (2)
Continuation PCTCN2017075323 · Mar 1, 2017
Related Publication 20180376414A1 · Dec 27, 2018