Subnetwork cluster division method, network equipment and storage medium
A network cluster and subnet technology, applied in the field of communication, can solve the problems of consuming a lot of human resources and low division accuracy, and achieve the effect of enhancing the quality of wireless communication and saving labor costs
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Embodiment 1
[0033] In order to solve the problem that the relevant subnet cluster division scheme requires high labor cost and the division result is inaccurate, resulting in poor network self-optimization effect, this embodiment provides a subnet cluster division method, which is applied to network equipment, and the network equipment can It is the network device in the base station, or it can be the network device in the network management system. Please refer to the following figure 1 The flow chart of the subnet cluster division method shown:
[0034] S102: For each cell in the target area, the network device respectively determines overlapping coverage of other cells in the target area in the cell.
[0035] In this embodiment, the target area refers to the area to be divided into subnet clusters, which may refer to the area corresponding to the entire network, or the area corresponding to a certain subnet. In other examples of this embodiment Among them, the target area may also be ...
Embodiment 2
[0068] This embodiment mainly uses an example to illustrate the process of network equipment evaluating the division result of the latest sub-process division based on the scope of each subnet cluster. Please refer to Figure 7 :
[0069] S702: For each divided subnet cluster, the network device respectively determines a pairwise distance of each cell in the subnet cluster, and determines a representative distance of the subnet cluster according to each pairwise distance.
[0070] In this embodiment, the network device evaluates the division result based on the distance between cells in the divided subnet clusters. Specifically, for any one of the subnet clusters, the network device can query and obtain the latitude and longitude of each cell , and then determine the pairwise distances of each cell respectively. After determining the pairwise distances between the cells in the subnet cluster, the network device can select a representative distance for the subnet cluster accor...
Embodiment 3
[0092] In order to make those skilled in the art more aware of the advantages and details of the subnet cluster division method in the foregoing embodiments, this embodiment will continue to describe the subnet cluster division scheme in conjunction with specific examples. Please refer to Figure 8 The flowchart shown:
[0093] S802: The network device generates an association degree network corresponding to the target area according to the overlapping coverage among cells in the target area.
[0094] First, the network device queries the overlapping coverage between cells in the target area, and then calculates the degree of correlation between the cells. In this embodiment, Ratio_AB represents the degree of association between cell A and cell B, and Ratio_B nbr A srv Represents the coverage of cell A in cell B, Ratio_A nbr B srv Represents the coverage of cell B in cell A:
[0095] Ratio_AB=(Ratio_B nbr A srv +Ratio_A nbr B srv ) / 2;
[0096] Table 2 shows the degre...
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