Life detecting system and method based on multi-rotor UAV

A multi-rotor UAV and life detection technology, applied in the field of life detection and rescue, can solve the problems of phase error, search and rescue range, limited flexibility, inability to accurately detect weak signals, etc., to achieve fast search, maintain real-time, The effect of eliminating distractions

Active Publication Date: 2019-04-05
HUNAN NOVASKY ELECTRONICS TECH
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Problems solved by technology

However, at present, when life detection is realized based on the UAV platform equipped with detection radar, due to the influence of meteorological interference and the turbulence of the UAV itself during flight, it will produce severe jitter, resulting in yaw, pitch angle changes and roll, etc. These changes There will be a phase error, and the target of life detection is weak signals such as breathing, heartbeat and limb swing. Under the influence of the above-mentioned phase error, the weak signal cannot be accurately detected, that is, the life detection radar cannot work normally during the flight of the drone. , the radar ca

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  • Life detecting system and method based on multi-rotor UAV
  • Life detecting system and method based on multi-rotor UAV
  • Life detecting system and method based on multi-rotor UAV

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[0043] The following further describes the present invention with reference to the accompanying drawings of the specification and specific preferred embodiments, but the protection scope of the present invention is not limited thereby.

[0044] Such as figure 1 As shown, the life detection system based on the multi-rotor drone in this embodiment includes a multi-rotor drone 1 and a life detection radar device 2 mounted on the multi-rotor drone 1, and also includes a life detection radar device 2 connected to Motion compensation device 3. When the multi-rotor UAV 1 is flying in the area to be measured, the life detection radar device 2 performs the detection of life body targets. During the detection process of the life detection radar device 2, the motion compensation device 3 is based on the multi-rotor unmanned The real-time position information of the aircraft 1 performs motion compensation on the radar detection signal of the life detection radar device 2 to compensate for the...

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Abstract

The present invention discloses a life detecting system and method based on a multi-rotor UAV. The system comprises a multi-rotor UAV and a life detecting radar device mounted on the multi-rotor UAV,and further comprises a motion compensating device connected with the life detecting radar device. When the multi-rotor drone is flying in a to-be-tested area, the life detecting radar device performsliving body target detection; and during the detection process of the life detecting radar device, the motion compensating device performs motion compensation on a radar detection signal according tothe real-time position information of the multi-rotor drone so as to compensate for the displacement deviation caused by the jitter of the multi-rotor UAV. The technical scheme of the present invention has the advantages of a simple structure, a low cost, dynamic life detection, high detection efficiency, high precision, a flexible detection mode, and the like.

Description

technical field [0001] The invention relates to the technical field of life detection and rescue, in particular to a life detection system and method based on a multi-rotor unmanned aerial vehicle. Background technique [0002] After large-scale natural disasters such as earthquakes and landslides occur, the most urgent task is to quickly detect and search for the specific location of the trapped buried people, so as to organize rapid rescue of on-site search and rescue personnel. At present, the search and rescue of rescuers usually adopts the method of manual search by rescuers with hand-held search equipment. The commonly used search equipment is the life detector. The life detector needs manual operation to search, and the manual search moves slowly. The search area can only be checked point by point, the search efficiency is very low, the detection area is small, and because search and rescue personnel need to enter, it is easy to cause secondary hazards, and the effici...

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Application Information

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IPC IPC(8): G01S13/88
CPCG01S13/88
Inventor 杨博王生水韩明华衣晓飞韩乃军唐良勇
Owner HUNAN NOVASKY ELECTRONICS TECH
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