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A Multifunctional Ecological Environment UAV Observation System

An ecological environment and observation system technology, applied in the direction of unmanned aircraft, motor vehicles, aircraft parts, etc., can solve the problems of inability to accurately obtain the ecosystem, institutions without observation, single ecosystem observation, etc., to achieve expanded observation The effect of precision, ensuring stability, and simple structure

Active Publication Date: 2022-05-10
中国气象局广州热带海洋气象研究所 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The existing multifunctional eco-environmental UAV observation system can only observe the high-altitude ecosystem in a single way, and does not have a mechanism that can observe the ground and water surface, which leads to the failure of the ecological environment UAV observation system. The scope of application is small, and it is impossible to accurately obtain the regional ecosystems on the ground and water surfaces. Therefore, we propose a multifunctional ecological environment UAV observation system

Method used

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  • A Multifunctional Ecological Environment UAV Observation System
  • A Multifunctional Ecological Environment UAV Observation System
  • A Multifunctional Ecological Environment UAV Observation System

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0028] Such as Figure 1-Figure 5 As shown, a multifunctional eco-environment UAV observation system includes a body 1, a camera 2, a connecting rod 3, a rotating shaft 4, a rotating leaf 5, an anti-collision rod 6, a ground moving mechanism 7, a crawler belt 701, and a rotating drum 702 , rotating shaft 703, side plate 704, cross bar 705, first chute 706, first slider 707, collar 708, vertical rod 709, first movable shaft 710, connecting block 711, connecting shaft 712, first return spring 713, the second movable shaft 714, the fixed rod 715, the floating mechanism 8, the L-shaped insertion rod 801, the second slide block 802, the second chute 803, the fixed plate 804, the second return spring 805 and the floating plate 806, the body 1 A camera 2 is installed inside the body 1, and a connecting rod 3 is connected to the outside of the body 1, a rotating shaft 4 is installed on one side of the connecting rod 3, a rotating blade 5 is connected to the outer side of the rotating ...

Embodiment 2

[0038] Such as Figure 5 As shown, the L-shaped plunger 801 drives the floating plate 806 to be installed on the bottom of the crawler belt 701 through the fixed plate 804, so that the drone can carry out ecological observation on the water surface through the floating plate 806. Under the elastic action of the second return spring 805, The L-shaped insert rod 801 can be installed on the rotating shaft 703 at different distances, which expands the application range of the floating plate 806. By installing the floating plate 806 at the bottom of the crawler belt 701, the device can pass through the floating plate 806 when the crawler belt 701 is not used. For use on the water surface, after the observation of the water surface is completed, by squeezing the L-shaped insertion rod 801, under the elastic action of the second return spring 805, the user can disassemble the floating plate 806, so that the device can be carried out on the ground through the track 701. Observation, s...

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Abstract

The invention relates to a multifunctional ecological environment unmanned aerial vehicle observation system, comprising a body, the top of the body is connected to a pump outlet, the bottom of the body is installed with a pump inlet, and an adjustment mechanism is connected inside the body, and the adjustment mechanism The interior includes a discharge pipe, and a ball valve is installed at the bottom of the discharge pipe. In the present invention, by setting the adjustment mechanism, the liquid transported by the body through the diaphragm is separated from the working liquid. When the diaphragm moves through the connecting rod, the body works under negative pressure and sucks liquid. When the diaphragm moves to the other side, Then the liquid is discharged, and the two diaphragms reciprocate continuously and synchronously, so that the compressed air enters the air distribution valve, so that the liquid flows in from the inlet, and the ball valve is pushed to move, so that the body is blocked. Through this setting, the diaphragm can be connected. It moves under the action of the rod, so that the user can automatically adjust the vacuum content of the solvent by controlling the connecting rod.

Description

technical field [0001] The invention relates to a multifunctional ecological environment unmanned aerial vehicle observation system, which belongs to the technical field of unmanned aerial vehicle observation. Background technique [0002] Direct observation of ecosystem function is a basic technical means for ecological environment research, status investigation and evaluation, and it is also one of the core scientific issues in the field of ecological research. The observation of ecosystem function elements mainly refers to the measurement of scalar quantities such as water, heat, and carbon exchange between terrestrial ecosystems and the atmosphere, which is of great significance to the research of ecosystem processes and global climate change. [0003] The existing multifunctional eco-environmental UAV observation system can only observe the high-altitude ecosystem in a single way, and does not have a mechanism that can observe the ground and water surface, which leads t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B64C39/02B64C25/54B60F5/02B64D47/08
CPCB64C39/02B64C25/54B60F5/02B64D47/08B64U2101/00
Inventor 刘礼许汉冰谭浩波李菲邹宇邓雪娇邓涛邓华胡胜
Owner 中国气象局广州热带海洋气象研究所