Abstract:
Embodiments of the present disclosure provide a method, an apparatus, and a system for controlling a self-optimization switch. By using technical solutions provided in embodiments of the present disclosure, enabling and disabling of self-optimization can be controlled, and a state of the self-optimization switch can be obtained. A technical solution provided in embodiments of the present disclosure is as follows: a method for controlling a self-optimization switch includes: obtaining a target state of a self-optimization switch; and sending a setting command that includes the target state to a managed unit, where the setting command instructs the managed unit to change the state of the self-optimization switch to the target state.
Abstract:
Embodiments of the present invention provide a method and device for handling a cell outage. The method for handling a cell outage includes: receiving, by a first base station, an energy saving activation message sent by a second base station when a cell outage happens to a second cell, where the energy saving activation message is used to disable the energy saving function; transferring, by the first base station, the first cell from the energy saving state to the normal state according to the energy saving activation message, or keeping a third cell in the normal state until learning that the cell outage of the second cell is solved. This method prevents a coverage blind area in the network when a cell outage happens to a second cell that covers the area of a first cell which is in the energy saving state.
Abstract:
Embodiments of the present disclosure relate to the communications field, and provide a network resource orchestration method and a device. The method includes: receiving, by a first management unit, information about a network resource from a second management unit, where the information about the network resource includes capability information of the network resource, and the capability information of the network resource is used to indicate a function or a feature of the network resource; and performing, by the first management unit, network resource orchestration based on the information about the network resource. In solutions in the embodiments of the present disclosure, the first management unit receives the information about the network resource including the capability information of the network resource from the second management unit, and performs network resource orchestration based on the information about the network resource, thereby implementing automatic network resource orchestration and improving network resource orchestration efficiency.
Abstract:
Embodiments of the present application disclose a method and an apparatus for managing a virtualized network function, and relate to the field of virtualization technologies, so as to improve work efficiency and resource usage. The method provided in the embodiments of the present application includes: allocating a resource to and configuring deployment specific parameters for a to-be-instantiated virtualized network function (VNF) to obtain a semi-instantiated VNF; and storing information of the semi-instantiated VNF, where the information of the semi-instantiated VNF includes an identifier of the semi-instantiated VNF, resource information of the semi-instantiated VNF, and deployment specific parameters of the semi-instantiated VNF.
Abstract:
This application provides a network model management method applied to a first device. The method includes obtaining first information of a network model, determining second information based on the first information, and sending the first and second information to a second device. The first information describes the network model. The second information indicates a network analysis function, and the network analysis function is allowed to use the network model. The foregoing method is used, so that the second device can establish an association relationship between the network model and the network analysis function, to implement real-time management for the network model.
Abstract:
A resource configuration method and an apparatus are disclosed, to resolve prior-art problems of a relatively undiversified and inflexible resource allocation mode, and being incapable of elastically responding to a sudden requirement for an additional resource. In the method, a resource configuration device may obtain a resource increment specific to a resource group, and reserve a resource of the resource increment for the resource group or allocate a resource of the resource increment to the resource group, so that the resource configuration device can flexibly allocate a resource to the resource group. When the resource group needs to be scaled out, but a target resource application volume for the scale-out exceeds a resource limit of the resource group that is maintained by the resource configuration device, the resource configuration device can allocate sufficient resources to the resource group.
Abstract:
Embodiments of the present invention disclose an alarm information processing method, including: acquiring, by an EMS, a first alarm information set reported by a VNFM, where the first alarm information set is generated after the VNFM performs correlation analysis on at least one piece of NFVI alarm information and at least one piece of VIM alarm information; acquiring, by the EMS, a second alarm information set reported by a VNF, where the second alarm information set includes at least one piece of VNF alarm information; and performing, by the EMS, correlation analysis on the first alarm information set and the second alarm information set, and dispatching a configured work order for alarm information that has a correlation relationship. By using the present invention, a cross-layer association between alarm information can be implemented to reduce a quantity of work orders.
Abstract:
The present invention discloses a method and an apparatus for coordinating cell outage compensation and capacity and coverage optimization, and belongs to the communications field. In the present invention, a cell to be coordinated is determined, where the cell is a cell that needs coordination of a COC action and a CCO action; priorities of the COC action and the CCO action are compared, and a high-priority action and a low-priority action are determined in the COC action and the CCO action; and for the cell to be coordinated, the high-priority action continues to be performed, and the low-priority action is stopped from being performed. This effectively solves a problem of a conflict generated when the COC action and the CCO action are performed for the same cell, and ensures normal execution of a network optimization action with a relatively high priority.
Abstract:
The present disclosure provides a method and an apparatus for associating reports, and relates to the field of radio communications, which are used to solve the problem in the prior art that an analysis and location result is not precise enough because information of an RLF report and an MDT measurement report of a UE cannot be fully applied in analysis and location of a radio link problem on a network. The method for associating reports includes: sending, by a base station, to a UE that executes an MDT job an identifier allocated to the UE; receiving, by the base station, an RLF report of the UE, where the RLF report includes the identifier; and associating, by the base station, the RLF report of the UE with an MDT measurement report that includes the identifier.
Abstract:
This application discloses a network issue troubleshooting method, device, and system. According to the method, a first device determines first information, where the first information includes network issue information indicating a network issue to be troubleshot, and sends the first information to a second device. The second device troubleshoots the network issue to be troubleshot based on network issue information. The adoption of the method helps resolve a problem that the first device and the second device have different requirements for troubleshooting network issues. In conventional methods, the second device diagnoses and rectifies network issues. In some cases, the first device may not expect some network issues to be diagnosed or rectified, but the second device cannot obtain the intent of the first device before troubleshooting. In this application, the problem can be effectively resolved because the second device troubleshoots network issues according to an indication of the first device.