Abstract:
A method and device for asset information management is provided. The method includes that: a Virtualized Infrastructure Manager (VIM) receives a request message from a Network Function Virtualization Orchestrator (NFVO), and the request message is used for acquiring Network Function Virtualization Infrastructure (NFVI) asset information, and the NFVI asset information includes at least one of an NFVI hardware asset and an NFVI software asset; the VIM acquires the NFVI asset information according to the request message; and the VIM sends the NFVI asset information to the NFVO. According to the technical solution provided in the present disclosure, an operator can fully know asset information, including hardware asset information and software asset information, of each access point after network function virtualization, so as to facilitate topology presentation.
Abstract:
An alarm processing method and an alarm processing apparatus are provided. In the alarm processing method, an alarm reported by a Virtualized Network Function (VNF) is received; VNF Forwarding Graph (VNF FG) information of the VNF and/or Network Forwarding Path (NFP) information of the VNF is acquired; and alarm analysis processing is performed on the received alarm according to the VNF FG information and/or the NFP information acquired.
Abstract:
Provided are a method and apparatus for sending system performance parameters, a management device, and a storage medium. The method for sending system performance parameters includes determining system performance parameters which include key performance indicator (KPI) information and confidence of the KPI information; and sending the system performance parameters.
Abstract:
The document discloses a method and an apparatus for establishing a network service instance. The method includes: receiving a network service instantiation request from a Network Management System (NMS); determining a network service descriptor for instantiating a network service; generating a network service instance and allocating a network service instance identifier to the generated network service instance; and performing a network service instantiation according to the determined network service descriptor and the allocated network service instance identifier.
Abstract:
Alarm processing methods and devices are provided. According to an alarm processing method, it is detected that a Network Functions Virtualization Infrastructure (NFVI) layer has a virtual resource pool failure; it is determined that the virtual resource pool failure is correlated to a Virtualized Network Function (VNF) instance; an NFVI layer alarm, which includes identification information identifying that an alarm type of the NFVI layer alarm is a virtual resource pool alarm, is generated; and the generated NFVI layer alarm is sent to a Virtualized Infrastructure Manager entity (VIM), and the identification information is used for indicating the VIM to send the NFVI layer alarm, the alarm type of which is the virtual resource pool alarm, to an Element Management System (EMS) through a Virtualized Network Function Manager entity (VNFM).
Abstract:
The disclosure discloses a method and device for controlling energy saving and compensation. The method for controlling energy saving and compensation includes that: cell load measurement results of all cells in an energy saving and compensation group are acquired, the energy saving and compensation group including energy saving cells and compensation cells; and according to the cell load measurement results and an energy saving and compensation policy, at least one cell in the energy saving and compensation group are controlled to enter or quit energy saving. By means of the disclosure, energy saving and compensation can be globally controlled, thereby reducing the complexity of determining energy saving and compensation cells.
Abstract:
Provided are a data analysis model management method, an electronic device and a storage medium. The method includes: acquiring a model management service module on a network management side of a communication network, where the model management service module includes at least one model management service interface; and performing a model management operation on a data analysis model according to the at least one model management service interface.
Abstract:
Provided are a software management method and apparatus, a management apparatus, and a storage medium. The software management method includes: management information of a software management object class is acquired, where the software management object class includes a capability management object class and a control management object class, the management information includes capability information corresponding to a managed network function set based on the capability management object class and operation information corresponding to the managed network function set based on the control management object class; and a software of the managed network function is managed according to the management information of the software management object class.
Abstract:
A method and device for transmitting a management instruction and managing an automatic scaling function of a VNF is provided. The method for transmitting a management instruction includes: determining by an EMS that an automatic scaling function of the VNF on a VNFM is required to be managed, and transmitting a first management instruction to the VNFM by the EMS, where the first management instruction is used for instructing the VNFM to manage the automatic scaling function of the VNF on the VNFM; or, determining by the EMS that the automatic scaling function of the VNF on a VNF instance is required to be managed, and transmitting a second management instruction to the VNFM or the VNF by the EMS, where the second management instruction is used for instructing the VNFM or the VNF instance to manage the automatic scaling function of the VNF on the VNF instance.
Abstract:
Provided are a method and a device for determining a working mode, a network element, an Element Management System (EMS) and Network Management System (NMS). In the method, static importance of a base station or cell is determined according to static data of the base station or cell; dynamic importance of the base station or cell is determined according to dynamic data of the base station or cell; the working mode of the base station or cell is determined according to both the static importance and the dynamic importance. By virtue of the technical solution, the problem caused by the adoption of a dynamic mode or a static mode to determine the working mode of the base station or cell is solved, and the determination on the working mode of the base station or cell is more reliable and effective.