A control method for an unmanned aerial vehicle control platform based on an intelligent device
A technology for unmanned aerial vehicles and intelligent equipment, which is applied to aircraft, instruments, vehicle energy storage, etc., and can solve the problems of inability to meet long-term flight operations, many dead spots in aerial photography of unmanned aerial vehicles, and inability to obtain live images in real time, so as to improve monitoring and control. and economic benefits, improving the efficiency of aerial photography, and improving the accuracy of work
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Embodiment 1
[0063] Such as Figure 1-8 As shown, a smart device-based unmanned aerial vehicle control platform includes a charging station A, a charging mechanism B, and an unmanned aerial vehicle C. The charging mechanism B is installed on the top of the charging station A. When the unmanned aerial vehicle C is docked Set above the charging mechanism B;
[0064]When the unmanned aerial vehicle C is docked on the charging mechanism B, the charging station A transmits power to the charging mechanism B, and the unmanned aerial vehicle C can supplement the power supply through the charging mechanism B. At this time, the power system of the unmanned aerial vehicle C stops working, and the mobile The unmanned aerial vehicle works as a road surveillance camera, which solves the problem of the endurance of the unmanned aerial vehicle for monitoring, and at the same time solves the problem of using ordinary surveillance cameras to monitor many dead spots, and sets up multiple charging stations as...
Embodiment 2
[0079] This embodiment is carried out on the basis of the foregoing embodiment 1, and mainly introduces the structure of the charging mechanism of the unmanned aerial vehicle control platform based on the structure of the smart device of the present invention.
[0080] Such as Figure 1-8 As shown, a smart device-based unmanned aerial vehicle control platform includes a charging station A, a charging mechanism B, and an unmanned aerial vehicle C. The charging mechanism B is installed on the top of the charging station A. When the unmanned aerial vehicle C is docked Set above the charging mechanism B;
[0081] When the unmanned aerial vehicle C is docked on the charging mechanism B, the charging station A transmits power to the charging mechanism B, and the unmanned aerial vehicle C can supplement the power supply through the charging mechanism B. At this time, the power system of the unmanned aerial vehicle C stops working, and the mobile The unmanned aerial vehicle works as ...
Embodiment 3
[0101] This embodiment is carried out on the basis of the aforementioned embodiments 1 and 2, and mainly introduces the structure of the charging station A of the unmanned aerial vehicle control platform based on the structure of the smart device of the present invention.
[0102] Such as Figure 1-8 As shown, a smart device-based unmanned aerial vehicle control platform includes a charging station A, a charging mechanism B, and an unmanned aerial vehicle C. The charging mechanism B is installed on the top of the charging station A. When the unmanned aerial vehicle C is docked Set above the charging mechanism B;
[0103] When the unmanned aerial vehicle C is docked on the charging mechanism B, the charging station A transmits power to the charging mechanism B, and the unmanned aerial vehicle C can supplement the power supply through the charging mechanism B. At this time, the power system of the unmanned aerial vehicle C stops working, and the mobile The unmanned aerial vehic...
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