Processing method for reverse inheritance modeling of data acquisition and processing system
A technology for data collection, processing and processing methods, applied in digital transmission systems, transmission systems, data exchange networks, etc., to solve the problem that the parent model does not have high abstraction and generality, operators cannot determine the complete set of manufacturers' equipment, and affect services. problems such as data query and display, to achieve the effect of improving configuration and development efficiency, facilitating query and display, and improving access efficiency
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Embodiment 1
[0031] exist figure 1 , which embodies the process of reverse inheritance modeling in the processing method of the present invention, that is, in the implementation process, the subclass model is firstly established according to the needs, and then on the basis of the subclass model, the parent class model is established, and the parent class model Inversely inherits the measurement object instance of the subclass model.
[0032] In this implementation, the subclass model is an abstraction of a class of measurement object instances, that is, in a certain operator's mobile communication network, a subclass model corresponds to a group of measurement object instances of the same type of a manufacturer or version. Examples of Huawei's BSC measurement objects include a group of BSC devices, such as Huawei_BSC_JN_001, Huawei_BSC_JN_002, and so on. According to the abstraction of these measurement object instances, a subclass model can be established, and it may be assumed to be na...
Embodiment 2
[0036] Embodiment 2 describes a usage scenario of this method in detail, that is, the measurement object instance and the corresponding sub-model already exist in the existing system. According to the needs of data display, the user establishes the parent class model and reversely inherits the subclass model. The main description of each step in the process is as follows:
[0037] 201~203: The user establishes a corresponding sub-model according to the measurement object instance in the existing system. In practical application, the user first establishes a subclass model according to the measurement object instance in the network, then edits the entity relationship of the subclass model, adds the measurement object instance to the model, and completes the mapping between the model and the instance. Specific examples in this embodiment can refer to the description in Embodiment 1;
[0038] 204: Modeling the parent class model, reversely inheriting the measurement object inst...
Embodiment 3
[0040] Embodiment 3 describes another usage scenario of this method in detail, that is, the measurement object instance and the corresponding sub-model already exist in the existing system. Then with the expansion of the network, a new measurement object instance is connected to the network, and a subclass model is established for the new measurement object instance. According to the needs of data display, the user modifies the parent class model and increases the reverse inheritance of the subclass model. The main description of each step in the process is as follows:
[0041] 301: As the network expands, new measurement object instances are added to the network. For example, subclass models Huawei_BSC and Ericsson_BSC have been established in the existing network, and a mapping relationship between the subclass models and measurement objects has been established. At the same time, the parent model BSC has been established, and the subclass models Huawei_BSC and Ericsson_BS...
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