Unmanned aerial vehicle with high endurance function for monitoring natural animals
A technology of unmanned aerial vehicles and nature, which is applied in the direction of rotorcraft, motor vehicles, air transportation, etc., can solve the problems of consuming manpower and material resources, failing to achieve high battery life, and affecting the progress of monitoring, so as to increase the storage capacity and improve the optical efficiency. Transformation effect, effect of improving battery life
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Embodiment 1
[0029] see Figure 1-3 , a kind of unmanned aerial vehicle with high endurance function for natural animal monitoring, comprising an unmanned aerial vehicle shell 2, a photovoltaic panel 3, a small SLR camera 7, an electric push rod 17 and a power supply module 21, the outer wall of the unmanned aerial vehicle shell 2 There are four wings 8 fixedly installed on the outer wall of the UAV casing 2, and the adjacent wings 8 are at an angle of 90°, and four wings 8 are installed, and The angle between the adjacent wings 8 is 90°. This design enables the UAV to obtain better lift when flying, and also makes the UAV have higher stability when taking off and landing. There will be no inclination when landing, which improves the safety of the drone. A photovoltaic panel installation groove 9 is opened on the top surface of the drone casing 2, and the photovoltaic panel 3 is installed in the photovoltaic panel installation groove 9. Inside, the inside of the wing 8 is fixedly installe...
Embodiment 2
[0032] see Figure 1-5 , a kind of unmanned aerial vehicle with high endurance function for natural animal monitoring, comprising an unmanned aerial vehicle shell 2, a photovoltaic panel 3, a small SLR camera 7, an electric push rod 17 and a power supply module 21, the outer wall of the unmanned aerial vehicle shell 2 There are four wings 8 fixedly installed on the outer wall of the UAV casing 2, and the adjacent wings 8 are at an angle of 90°, and four wings 8 are installed, and The angle between the adjacent wings 8 is 90°. This design enables the UAV to obtain better lift when flying, and also makes the UAV have higher stability when taking off and landing. There will be no inclination when landing, which improves the safety of the drone. A photovoltaic panel installation groove 9 is opened on the top surface of the drone casing 2, and the photovoltaic panel 3 is installed in the photovoltaic panel installation groove 9. Inside, the inside of the wing 8 is fixedly installe...
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