A positioning method and device
A positioning method and position information technology, applied in wireless communication, electrical components, etc., can solve problems such as interruption of positioning data, low positioning accuracy, and inability to achieve positioning, so as to improve positioning accuracy, reduce the possibility of positioning failure, and solve user problems. The effect of missing location information
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Embodiment 1
[0054] refer to figure 1 As shown, in Embodiment 1 of the present invention, the flow of the positioning method is as follows:
[0055] Step 100: Collect various positioning data in real time. Wherein, various types of positioning data include at least: DPI data, MR data and base station signaling data.
[0056] Step 101: When it is determined that the preset positioning condition is satisfied, all positioning data collected within a set time range is acquired as data to be processed. For example: when it is determined that the preset positioning cycle is reached, it is determined that the preset positioning condition is met; for example, when a positioning instruction is received, it is determined that the preset positioning condition is met, and so on.
[0057] Step 102: Based on the pre-configured positioning priorities for each type of positioning data, select a type of positioning data with the highest current positioning priority from the data to be processed for posit...
Embodiment 2
[0060] The positioning method in the above-mentioned embodiment will be described in further detail below, refer to Figure 2A and Figure 2B As shown, in Embodiment 2 of the present invention, the specific flow of the positioning method is as follows:
[0061] Step 200: Collect various positioning data such as DPI data, MR data, and base station signaling data in real time, and save all the collected positioning data to a designated storage area.
[0062] Step 201: When it is determined that the preset location condition is satisfied, the data to be processed collected within the set time range is acquired from the specified storage area.
[0063] Step 202: Judging whether there is DPI data in the obtained data to be processed, if yes, execute step 203; if not, execute step 204.
[0064] Step 203: Obtain current location information based on the DPI data in the data to be processed.
[0065] Optionally, when performing step 203, the following methods may be adopted but not...
Embodiment 3
[0122] The following uses a specific application scenario to further describe the above-mentioned embodiment in detail, refer to Figure 3A and Figure 3B As shown, in Embodiment 3 of the present invention, the specific flow of the positioning method is as follows:
[0123] Step 300: Collect various positioning data such as DPI data, MR data, and base station signaling data in real time, and save all the collected positioning data to a designated storage area.
[0124] Step 301: When it is determined that the preset positioning condition is satisfied, for example, when it is determined that the preset positioning cycle is reached, obtain the pending processing collected within 5 minutes (ie, within the set time range) from the designated storage area data.
[0125] Step 302: Determine whether there is DPI data in the obtained data to be processed, if yes, execute step 303; if not, execute step 304.
[0126] Step 303: Screening the target DPI data from all the DPI data, wher...
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