Abstract:
A system and method for implementing capability exposure and a Capability Exposure Platform (CEP) are provided. the method includes: the CEP receive a user capability updating service request of User Equipment (UE), and determines whether to initiate network capability updating service for a user or not according to subscription information of the user and current network capability information; a corresponding user capability updating parameter is generated after determining to initiate the network capability updating service for the user; and a user capability updating request is sent to a Capability Schedule Entity (CSE), the generated user capability updating parameter being carried therein, to cause the CSE to schedule a network resource to meet a network capability requirement of the user according to the user capability updating parameter.
Abstract:
A capability opening method and system, and a capability opening functional entity. The method comprises: after receiving a requirement of a third party for a mobile network, acquiring current network information; based on the requirement and the current network information, creating private network networking information, wherein the private network networking information is used for instructing the creation of a private network and/or a private network element; and sending the private network networking information to a network arrangement functional entity. The technical solution of the present invention can solve the problem in the related art that capability opening is limited only to the opening of a present network capability, but cannot provide additional services exceeding the present network capability.
Abstract:
A terminal power-saving method, a terminal power-saving device, and a network-side power-saving device are disclosed. The terminal power-saving device includes a power-saving parameter receiving module and a power-saving execution module. The power-saving parameter receiving module is configured to receive an idle-mode power-saving parameter from a network side, and the power-saving execution module is configured to execute a power-saving operation according to the idle-mode power-saving parameter after the terminal enters an idle mode. When a terminal accessing a 3GPP network has a power-saving requirement, the terminal can perform more optimal power-saving control through a long DRX parameter in a connection mode, and in an idle mode the terminal can receive paging message in an active window time interval and close a wireless transceiver system in a dormant time interval, thereby greatly reducing the power consumption of the terminal, and achieving the purpose of power-saving.
Abstract:
A method and a system for network resource management, a network device and a computer-readable storage medium. The method for network resource management may include: acquiring, by a Network Function Virtualization Orchestrator (NFVO) module, a Network Service Descriptor (NSD) and/or a Virtualized Network Function Descriptor (VNFD) from an Operation Support System (OSS) module, wherein the VNFD includes the description of virtual machine resources and container resources; and performing, by a Network Function Management and Orchestration (MANO) system and according to a life cycle deployment policy of an NS or VNF, a life cycle management operation on the NS or VNF in one of a virtual machine mode, a container mode and a hybrid orchestration mode.
Abstract:
A core network node may send an overload indicator capable of distinguishing PLMNs to an access network node when the core network node is overloaded; and the access network node may learn a PLMN over which access control needs to be performed according to the overload indicator received. PLMNs are distinguished in access control according to an actual situation of overload of the network node caused by a PLMN sharing the network, ensuring fairness in access control over terminals of all PLMNs sharing the network.
Abstract:
A terminal power-saving method, a terminal power-saving device, and a network-side power-saving device are disclosed. The terminal power-saving device includes a power-saving parameter receiving module and a power-saving execution module. The power-saving parameter receiving module is configured to receive an idle-mode power-saving parameter from a network side, and the power-saving execution module is configured to execute a power-saving operation according to the idle-mode power-saving parameter after the terminal enters an idle mode. When a terminal accessing a 3GPP network has a power-saving requirement, the terminal can perform more optimal power-saving control through a long DRX parameter in a connection mode, and in an idle mode the terminal can receive paging message in an active window time interval and close a wireless transceiver system in a dormant time interval, thereby greatly reducing the power consumption of the terminal, and achieving the purpose of power-saving.
Abstract:
A core network node may send an overload indicator capable of distinguishing PLMNs to an access network node when the core network node is overloaded; and the access network node may learn a PLMN over which access control needs to be performed according to the overload indicator received. PLMNs are distinguished in access control according to an actual situation of overload of the network node caused by a PLMN sharing the network, ensuring fairness in access control over terminals of all PLMNs sharing the network.
Abstract:
A method and a system for network resource management, a network device and a computer-readable storage medium. The method for network resource management may include: acquiring, by a Network Function Virtualization Orchestrator (NFVO) module, a Network Service Descriptor (NSD) and/or a Virtualized Network Function Descriptor (VNFD) from an Operation Support System (OSS) module, wherein the VNFD includes the description of virtual machine resources and container resources; and performing, by a Network Function Management and Orchestration (MANO) system and according to a life cycle deployment policy of an NS or VNF, a life cycle management operation on the NS or VNF in one of a virtual machine mode, a container mode and a hybrid orchestration mode.
Abstract:
Disclosed are a charging method and system for Machine-Type Communication (MTC), and a message processing entity. After receiving an MTC service request message or an MTC service requesting Short Message (SM), a message processing entity generates a charging request including MTC service type information, and sends the charging request to an online charging subsystem/offline charging subsystem; and after receiving the charging request, the online charging subsystem/offline charging subsystem performs a charging operation using a charging method corresponding to the MTC service type information, and returns a charging response to the message processing entity. With the disclosure, charging for different MTC services can be implemented, such that charging is performed more accurately.
Abstract:
A capability opening method and system, and a capability opening functional entity. The method comprises: after receiving a requirement of a third party for a mobile network, acquiring current network information; based on the requirement and the current network information, creating private network networking information, wherein the private network networking information is used for instructing the creation of a private network and/or a private network element; and sending the private network networking information to a network arrangement functional entity. The technical solution of the present invention can solve the problem in the related art that capability opening is limited only to the opening of a present network capability, but cannot provide additional services exceeding the present network capability.