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Water project area real-time monitoring system, method and device based on unmanned aerial vehicle

A water conservancy project and real-time monitoring technology, applied in the field of drones, can solve problems such as difficult monitoring and incomplete monitoring, and achieve the effect of ensuring accuracy and forward-looking

Inactive Publication Date: 2017-01-11
GUANGZHOU INST OF GEOGRAPHY GUANGDONG ACAD OF SCI
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AI Technical Summary

Problems solved by technology

[0003] The purpose of the present invention is to avoid the deficiencies in the above-mentioned prior art and provide a real-time monitoring system and method for water conservancy engineering areas based on unmanned aerial vehicles, so as to realize the monitoring of data in secret and harsh environments, and solve the problem of difficult monitoring, The problem of incomplete monitoring

Method used

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Examples

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Comparison scheme
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Embodiment Construction

[0016] The present invention is further described in conjunction with the following examples.

[0017] In order to monitor the water level, lake area, sluice opening and closing or blockage, and dam stability of the entire water conservancy project area, the monitoring personnel in the water conservancy project area have constructed a real-time monitoring system for the water conservancy project area based on drones in this embodiment. , the system includes a four-rotor UAV, a controller, and an imaging device mounted on the UAV. The imaging device sends the collected data information to the controller. The status of the engineering area is monitored.

[0018] In the daily monitoring and management of water conservancy project areas, monitoring personnel load ordinary digital cameras on drones as imaging devices. No special measuring cameras are used here because the images collected by digital cameras can be directly sent to the controller. The dependence on professional equ...

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Abstract

The invention relates to the technical field of an unmanned aerial vehicle and especially relates to a water project area real-time monitoring system and method based on the unmanned aerial vehicle. The unmanned aerial vehicle is utilized to carry an image capturing device to carry out image acquisition work, so that monitoring of data under secret and bad environment can be realized; when the water project area is monitored comprehensively, more detailed observation and analysis are carried out on key monitoring regions, thereby ensuring monitoring accuracy and prospective; the water project area real-time monitoring method based on the unmanned aerial vehicle can be realized through a computer program stored in a computer readable storage medium by establishing function modules and constructing a function module framework; and for the water project area real-time monitoring system based on the unmanned aerial vehicle, a controller of the system has the function module framework, and can input the computer program for carrying out the function module framework, thereby realizing water project area real-time monitoring based on the unmanned aerial vehicle.

Description

technical field [0001] The invention relates to the technical field of unmanned aerial vehicles, in particular to a real-time monitoring system and method for water conservancy engineering areas based on unmanned aerial vehicles. For the real-time monitoring method of water conservancy project area based on UAV, functional modules can be established, combined into a functional module framework, and implemented by a computer program stored in a computer-readable storage medium. Background technique [0002] For the monitoring of water conservancy project areas, traditional monitoring methods are difficult to obtain data in hidden and harsh environments, and there are problems such as difficult monitoring and incomplete monitoring. The traditional manual field measurement 3D modeling method has high work intensity, low efficiency, and low coverage of sampling points. The monitoring data obtained by general 3D measurement can only reflect the status of scattered monitoring poin...

Claims

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Application Information

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IPC IPC(8): G06K9/00G01C11/00
CPCG01C11/00G06V20/13
Inventor 杨骥李勇张南峰周捍东杨敬锋
Owner GUANGZHOU INST OF GEOGRAPHY GUANGDONG ACAD OF SCI
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