Real-time capture method and system of docking airplane on the basis of machine vision

A machine vision and aircraft technology, applied in the field of real-time capture methods and systems for docked aircraft, can solve problems such as high weather and illumination requirements, poor adaptability, lack of intelligent information processing capabilities, etc., to reduce the scope of processing areas and improve Clarity, the effect of improving the visual effect

Active Publication Date: 2016-02-17
SHENZHEN CIMC TIANDA AIRPORT SUPPORT
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AI Technical Summary

Problems solved by technology

The Visual Aircraft Parking Guidance System (VDGS) developed by the American Honeywell Company and the Video Parking Guidance System (VDOCKS) developed by the German Siemens Company are also used in some internati...

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  • Real-time capture method and system of docking airplane on the basis of machine vision

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Embodiment Construction

[0078] Below in conjunction with accompanying drawing, structural principle and working principle of the present invention are specifically described:

[0079] see figure 1 and figure 2 , figure 1 It is a schematic diagram of a docking aircraft real-time capture system according to an embodiment of the present invention, figure 2 It is a schematic diagram of real-time capture of docked aircraft according to an embodiment of the present invention. The tracking and positioning system for docked aircraft based on machine vision of the present invention is mainly composed of a camera 1 , a central processing device 2 and a display device 3 . The imaging device 1 is connected to the central processing device 2, and the central processing device 2 is connected to the display device 3. The imaging device 1 sends the captured image to the central processing device 2, and the central processing device 2 sends the display content including the guidance information to the display de...

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Abstract

The invention discloses a real-time capture method and system of a docking airplane on the basis of machine vision. The method comprises the following steps: dividing a monitoring scene into different information processing functional areas to improve processing efficiency; on the basis of a median filtering background model, a Gaussian mixture background model or a background model of kernel density probability estimation, simulating the dynamic distribution of a background in a scene, carrying out background modeling, and then, carrying out difference on a current frame and the background model to eliminate the background; carrying out statistics on a gray value, which is extracted through background elimination, in a foreground area to carry out shade elimination; and establishing a standard front-side airplane area template, detecting and extracting a target area, obtaining a vertical projection curve of the area, obtaining a correlation coefficient of the vertical projection curve and the vertical projection curve of the standard front-side airplane area template to judge whether an airplane docks, and carrying out further verification through the engine and the front wheel of the airplane captured through detection. The invention also provides a real-time capture system of the docking airplane, wherein the real-time capture system correspondingly realizes the above method.

Description

technical field [0001] The invention relates to a berth aircraft positioning and guidance technology, in particular to a machine vision-based real-time docking aircraft capture method and system for moving object detection, feature recognition and verification of aircraft berth guidance. Background technique [0002] Aircraft parking guidance refers to the process of guiding an arriving aircraft from the end of the taxiway to the parking position on the apron and parking it accurately. The purpose of aircraft parking guidance is to ensure the safe and accurate parking of docked aircraft, to facilitate the accurate docking of aircraft and various ground handling interfaces, and to enable boarding bridges to effectively dock with aircraft doors, improving the efficiency and safety of airport operations. According to the types of sensors used, automatic aircraft parking guidance systems are mainly divided into: (1) buried coils; (2) laser scanning ranging; (3) visual perception...

Claims

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Application Information

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IPC IPC(8): G06T7/20
Inventor 邓览程建王帅李鸿升习友宝王海彬王龙
Owner SHENZHEN CIMC TIANDA AIRPORT SUPPORT
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