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Rotor-type unmanned aerial vehicle automatically adjusting gravity center and adjustment method

An automatic adjustment, unmanned aerial vehicle technology, applied in the field of unmanned aerial vehicles, can solve the problems of inability to accurately test the position of the center of gravity of the unmanned aerial vehicle, increase the redundant counterweight, etc., to simplify and reduce weight, less test data, and improve safety. Effect

Active Publication Date: 2014-08-13
ZHEJIANG UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0009] The invention provides a rotary-wing unmanned aerial vehicle that automatically adjusts the center of gravity after being loaded and an adjustment method, which not only has a simple structure, but also solves the problem in the prior art that the position of the center of gravity of the unmanned aerial vehicle cannot be accurately tested and redundant counterweights will be added

Method used

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  • Rotor-type unmanned aerial vehicle automatically adjusting gravity center and adjustment method
  • Rotor-type unmanned aerial vehicle automatically adjusting gravity center and adjustment method
  • Rotor-type unmanned aerial vehicle automatically adjusting gravity center and adjustment method

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Embodiment Construction

[0052] Such as Figure 1~5 As shown, the rotary wing drone with automatic center of gravity adjustment of this embodiment includes: a body 1, eight groups of rotor assemblies 2 installed on the body 1 evenly distributed in a circumferential direction, and a detection device 3 and a translation mechanism 4 are provided at the bottom of the body 1.

[0053] The rotor assembly 2 includes a transmission shaft 21 connected with the body 1 and a rotor 22 installed at the free end of the transmission shaft 21.

[0054] The testing device includes four support assemblies 3 vertically standing under the body 1 to jointly support the body to keep the body level and test the support force at the same time. The support assembly 3 includes: an inner sleeve 31 and an outer sleeve 32 that are mated and fitted, abutting the inner sleeve and The compression spring 33 and the spring pressure detection module (not shown in the figure) between the outer sleeves, the four inner sleeves 31 are fixed on ...

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Abstract

The invention provides a rotor-type unmanned aerial vehicle automatically adjusting a gravity center after loading and an adjustment method. The rotor-type unmanned aerial vehicle includes a machine body provided with a rotor assembly, the bottom of the machine body is provided with a testing device for supporting the machine body to test the weight and the gravity center of the machine body and a translational mechanism connected with the machine body; the translational mechanism comprises a mobile output end for fixing a load. According to the rotor-type unmanned aerial vehicle automatically adjusting the gravity center and the adjustment method, a gravity center position of the unmanned aerial vehicle is controlled through installation of the testing device and the translational mechanism on the machine body, so that the unmanned aerial vehicle can perform smooth taking-off and landing and safe landing, and the security of the unmanned aerial vehicle is improved; and the adjustment method is simple in process, enables detection and adjustment to be carried out from time to time, and is applicable to a working condition that requires to frequently modify the machine body.

Description

Technical field [0001] The invention relates to a small unmanned aerial vehicle, in particular to a rotary-wing unmanned aerial vehicle that automatically adjusts its center of gravity and an adjustment method. Background technique [0002] At present, small UAVs at home and abroad have been widely used in civil and military fields, such as disaster monitoring in disaster areas, aerial photography of television stations, power line inspections, weather detection, and target detection. [0003] Small UAVs mainly include unmanned helicopters, unmanned fixed-wing aircraft, unmanned multi-rotor aircraft, unmanned airships, and unmanned parawing aircraft. Among them, rotary-wing UAVs have simple structure and cost It is inexpensive and widely used. More importantly, it does not require a launch system, can take off and land vertically, hover more freely, and has good flight flexibility. It can fly at various speeds and routes with various flight profiles. Rotor-wing drones mainly inclu...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B64C27/32B64C27/02G01M1/12
Inventor 何勇肖宇钊张艳超庄载椿叶旭君
Owner ZHEJIANG UNIV
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