Unmanned aerial vehicle with astronomical instruments

A technology for astronomical instruments and unmanned aerial vehicles, which can be used in rotorcraft, aircraft, motor vehicles, etc., to solve problems such as astronomical observation and research limitations, and achieve the effect of stable image without shaking.

Inactive Publication Date: 2018-10-12
德化县美丽澄电脑经营部
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Since the earth's atmosphere has only seven narrow "windows" for infrared rays, large infrared telescopes are often placed in high mountain areas, but if they are in plain areas, astronomical observation and research are subject to many restrictions

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  • Unmanned aerial vehicle with astronomical instruments
  • Unmanned aerial vehicle with astronomical instruments
  • Unmanned aerial vehicle with astronomical instruments

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Embodiment Construction

[0023] see Figure 1~4 , in the embodiment of the present invention, a kind of unmanned aerial vehicle containing astronomical instrument, comprises unmanned aerial vehicle fuselage 1, and the top box 8 is installed in the center of the upper surface of unmanned aerial vehicle fuselage 1, unmanned aerial vehicle fuselage 1 front and rear left and right sides The first rotor 2, the second rotor 3, the third rotor 4 and the fourth rotor 5 are respectively installed at the positions of the four corners, and the impeller shafts of the third rotor 4 and the fourth rotor 5 are connected with the first frame frame 11, The impeller shafts of the first rotor 2 and the second rotor 3 are connected to the second frame frame 12, and the first frame frame 11 and the second frame frame 12 are cross-fixed on the outer wall of the base 9 The middle section of the first machine beam frame 11 is fixedly connected to the outer surface of the base 9, and the upper sides of the two ends of the fir...

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Abstract

The invention discloses an unmanned aerial vehicle with astronomical instruments. The unmanned aerial vehicle comprises an unmanned aerial vehicle fuselage. An upper top box is mounted at the center of the upper surface of the unmanned aerial vehicle fuselage. A first rotor wing, a second rotor wing, a third rotor wing and a fourth rotor wing are mounted at the front, rear, left and right cornersof the unmanned aerial vehicle fuselage correspondingly. A first vehicle beam frame is connected between impeller shafts of the third rotor wing and the fourth rotor wing. According to the unmanned aerial vehicle, a shooting device arranged in the upper top box automatically shoot and record astronomical data information videos obtained by an infrared telescope, optical signals are converted intoelectrical signals, the electrical signals are stored and then remotely transmitted to a terminal of workers through a signal information transceiver for display, people obtain astronomical information according to shot video data, by designing combination of the astronomical instruments and the unmanned aerial vehicle, limitation of high mountain terrain is avoided when the infrared telescope isused for research astronomical star, and thus people research astronomy more conveniently.

Description

technical field [0001] The invention relates to the technical field of unmanned aerial vehicles, in particular to an unmanned aerial vehicle containing astronomical instruments. Background technique [0002] Infrared telescopes are telescopes that receive infrared radiation from celestial bodies. The shape and structure are similar to optical mirrors, and generally both can be used for infrared observation and optical observation. Infrared observation imaging is also different from optical images. Infrared telescopes can see infrared rays, that is, telescopes between the wavelength band (wavelength 800-1000nm). It is also one of the night vision binoculars in military applications. Of course, infrared telescopes are more often applied to astronomical observations. Infrared telescopes convert infrared rays into electron streams through photoelectric conversion, then multiply the electrons, and finally make the electrons hit the fluorescent screen and become visible light. ...

Claims

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Application Information

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IPC IPC(8): B64C27/08B64C27/12B64D47/08H04N7/18
CPCB64C27/08B64C27/12B64D47/08H04N7/18
Inventor 林建铃
Owner 德化县美丽澄电脑经营部
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