Comprehensive hydro-project quality monitoring system and method
A comprehensive monitoring and water body technology, applied in rotorcraft, aircraft parts, unmanned aerial vehicles, etc., can solve the problem of difficulty in improving the efficiency of water sample collection by drones, and achieve the effect of improving efficiency and saving manpower and labor.
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Embodiment 1
[0044] combine figure 1 and figure 2 As shown, a comprehensive monitoring system for water conservancy and water quality includes a drone 1, a monitoring center, and a sampling platform 2 located at multiple water sampling points; the water sampling points in this application are set in rivers, lakes and other river basins, Each water body sampling point has corresponding latitude and longitude data, and the sampling platform 2 is set on each water body sampling point for the UAV 1 to collect water samples.
[0045] Wherein, the monitoring center is used for wireless communication with the UAV 1 . The monitoring center is used to send the driving command to the UAV 1, wherein the driving command carries the location information of multiple water body sampling points, and the location information of the multiple water body sampling points is arranged in the order of collection, thus, the UAV 1 According to the location information of multiple water body sampling points, wate...
Embodiment 2
[0062] A water conservancy and water quality comprehensive monitoring method such as the above-mentioned water conservancy and water quality comprehensive monitoring system, comprising the following steps:
[0063] Positioning step: the UAV controller receives the driving instruction sent by the monitoring center, and flies to hover above the first sampling platform 2 according to the position information output by the UAV positioning unit and the position information of a plurality of water body sampling points;
[0064] Connection steps: the UAV controller controls the electric reel 113 to start, and drives the traction block 3 to move downward to interfere with the inner concave surface 27 of the sampling platform 2 until the traction block 3 fits into the accommodating groove 21, and the UAV The controller controls the ring electromagnet 10 to be energized based on the trigger signal output by the trigger device 6, and controls the electric reel 113 to reset accordingly, an...
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