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Hovercar gravity center automatic adjusting system and method, and hovercar

A flying car and automatic adjustment technology, applied in the field of flying cars, can solve the problems of no reference value of data, occupying operating space, and impracticality

Pending Publication Date: 2018-10-09
中宇航通(北京)控股有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It needs dynamic real-time unlimited number of measurements, which is not practical in practical applications, takes up running space, and the data provided has no reference value

Method used

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  • Hovercar gravity center automatic adjusting system and method, and hovercar
  • Hovercar gravity center automatic adjusting system and method, and hovercar
  • Hovercar gravity center automatic adjusting system and method, and hovercar

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Embodiment Construction

[0063] The present invention will be further explained below in conjunction with the accompanying drawings and specific embodiments. It should be understood that the following specific embodiments are only used to illustrate the present invention but not to limit the scope of the present invention.

[0064] The term "front" in the present invention refers to the forward direction of the flying car when it is driving or flying normally, and vice versa is "rear";

[0065] The term "up" in the present invention means that when the flying car is driving or flying normally, it is "up" if it is above the vertical direction of the flying car, and vice versa.

[0066] figure 2 It is a schematic diagram of the adjustment process of the present invention. The dotted line in the figure indicates the moving position of the front wing or the rear wing. The automatic adjustment system for the center of gravity of the flying car is the main adjustment system for the center of gravity of th...

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PUM

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Abstract

The invention discloses a hovercar gravity center automatic adjusting system and method, and a hovercar. The hovercar gravity center automatic adjusting system comprises a gravity center detecting system, main adjusting systems and a fine adjusting system; the main adjusting systems are located on the left side and the right side of the hovercar and comprise two front wings and two rear wings, wherein the front wings are arranged on the position, close to the lower portion, of a hovercar main body, and the rear rings are arranged on the position, close to the top, of a hovercar frame; the front wings and the two rear wings are symmetrical in the advancing direction of the hovercar; and through rotating of the front wings and the rear wings, the sweep angles between the front wings and thehovercar main body as well as between the rear wings and the hovercar main body are changed so as to adjust the gravity center of the hovercar; the fine adjusting system is located at the tail of thehovercar main body and comprises a tail retractable empennage mechanism; and the staying position of the empennage mechanism is controlled by extending and retracting the empennage mechanism so as toadjust the gravity center of the hovercar.

Description

technical field [0001] The invention relates to a system and method for automatically adjusting the center of gravity of a flying car and the flying car, belonging to the technical field of flying cars. Background technique [0002] The existing flying car schemes in the world do not have the function of adjusting the front and rear positions of the center of gravity according to the change of the vehicle load. [0003] At present, the only center of gravity adjustment is real-time three-dimensional center of gravity positioning, three-dimensional dynamic center of gravity sensor measurement system and algorithm of the car system, the principle is through the body height sensor system located on the four wheel suspension of the car and the pressure sensor system in the spring shock absorption system Work together to automatically measure and calculate the real-time three-dimensional center of gravity positioning in the process of car movement unlimited times. It needs dynam...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B60F5/02B64C3/38B64C5/12
CPCB64C3/38B64C5/12B60F5/02
Inventor 刘巍刘新林刘伟杨杰刘健宇冀湘予
Owner 中宇航通(北京)控股有限公司
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