Positioning method and positioning device for weak coverage area
A positioning method and coverage area technology, applied in electrical components, wireless communication, etc., can solve the problems of no weak coverage area positioning scheme, lag, consumption of more material resources and manpower, etc.
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Embodiment 1
[0260] Embodiment 1: Locate 4G weaker coverage areas based on 4GMR data. Such as Figure 13 As shown, this embodiment includes the following steps:
[0261] Step 501: 4GMR data extraction, extract the MR data of the whole network for one week according to the requirements of China Mobile OMC-R specification, it is recommended to enable the reporting of AoA and TA. The original data format is as follows:
[0262]
[0263]
[0264] Step 502: Merge MR data. Merge the MR data with the same ReportTime and userlabel into one, that is, one sample point for subsequent processing, as shown in the table below.
[0265]
[0266] Step 503: Select an accurate geolocation solution according to the extracted MR data.
[0267] For each MR sample point merged through the preceding steps, the data integrity is different, and the positioning scheme is different. The data scTA and scAOA required for the positioning scheme based on TA+AoA are listed as MR array A (denoted as MRArrayA...
Embodiment 2
[0327] Embodiment 2: The MR data of 2G or 3G is used to locate the extremely weak or no coverage area of 4G. Such as Figure 14 As shown, this embodiment includes the following steps:
[0328] Step 601: 2G or 3GMR data extraction. According to the requirements of China Mobile OMC-R specification, extract the MR data of 2G or 3G network for one week. For 3GMR, it is recommended to enable reporting of AoA and TA.
[0329] Step 602: Merge and filter MR data. Merge the data with the same reporting time and UE number into one piece, that is, one sample point, and only keep the sample points containing the level information of 4G neighboring cells.
[0330] Step 603: Select an accurate geolocation solution according to the reserved MR sample points.
[0331] For 3GMR: similarly, classify scTA and scAOA into MRDataGroupA, and use a positioning scheme based on TA+AoA; classify scPccpchRSCP and ncPccpchRSCP of at least two non-common base station neighbor cells into MRDataGroupB...
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