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Unmanned aerial vehicle battery automatic exchange, data transmission and fault detection platform

An automatic exchange and data transmission technology, which is applied to aircraft parts, transportation and packaging, and ground installations. It can solve problems such as long-term failure, failure detection function, and impact on drone battery life, so as to extend battery life and improve work. efficiency effect

Inactive Publication Date: 2016-12-14
CHINA HUALU PANASONIC AVC NETWORKS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there are the following shortcomings: 1. It takes a long time to start charging after landing; 2. There is no function of exporting the data taken by the drone, and sometimes the battery life of the drone is affected due to insufficient data storage space; 3. There is no fault The detection function can not detect the appearance failure of the UAV in time

Method used

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  • Unmanned aerial vehicle battery automatic exchange, data transmission and fault detection platform
  • Unmanned aerial vehicle battery automatic exchange, data transmission and fault detection platform
  • Unmanned aerial vehicle battery automatic exchange, data transmission and fault detection platform

Examples

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Embodiment 1

[0013] Such as figure 1 , 2 Shown: there is a general control center and a drone landing platform, the general control center is the same as the prior art, the platform control center is connected to the general control center in communication, and there are N subsystems connected to the platform control center, as in this embodiment There are 5 subsystems; the platform control center is equipped with a control and communication module, connected to the control and communication module with a memory and a 360-degree panoramic camera, and the subsystem is equipped with a charging device and an automatic battery exchange device connected to the control and communication module ( Such as manipulators), the output of the charging device is connected to the battery; the drone positioning sensor (infrared sensor, etc.) is installed on the drone landing platform, and the output of the drone positioning sensor is connected to the control and communication module . The UAV landing platf...

Embodiment 2

[0018] Such as image 3 , Figure 4 As shown, the principle of embodiment 2 is the same as that of embodiment 1, except that the subsystem is also provided with a communication module and a camera. The charging device, automatic battery exchange device, drone positioning sensor and camera are all connected with the communication module The control and communication modules are connected; there are multiple UAV landing platforms, and each UAV landing platform is provided with a corresponding subsystem. Such as Figure 4 If there are 9 drone landing platforms, there are 9 subsystems, that is, each drone landing platform is equipped with a subsystem, and each drone landing platform is also equipped with a drone Position the sensor.

[0019] Working principle: When the battery power of the drone is lower than a certain value, the drone moves to the top of the platform control center through the position coordinate information of the platform control center imported in the previous ...

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Abstract

The invention discloses an unmanned aerial vehicle battery automatic exchange, data transmission and fault detection platform which is savable in time and effort and capable of effectively prolonging the endurance time and improving the working efficiency. The unmanned aerial vehicle battery automatic exchange, data transmission and fault detection platform is provided with a platform control center communicating with a master control center, and a plurality of subsystems are connected to the platform control center. The platform control center is provided with a control and communication module, and a memory and a 360-degree panoramic camera are connected to the control and communication module. Each subsystem is provided with a charging device and a battery automatic exchange device which are connected with the control and communication module. The output end of each charging device is connected with a battery. An unmanned aerial vehicle landing platform is provided with an unmanned aerial vehicle positioning sensor. The output end of the unmanned aerial vehicle positioning sensor is connected with the control and communication module.

Description

Technical field [0001] The invention relates to an unmanned aerial vehicle operation auxiliary platform, in particular to an unmanned aerial vehicle battery automatic exchange, data transmission and fault detection platform which saves time and energy, can effectively extend the endurance time and improve the working efficiency. Background technique [0002] In recent years, the UAV industry has developed rapidly and has been widely used in urban management, agriculture, geology, meteorology, electric power, rescue and disaster relief, video shooting and other industries. The endurance (continuous navigation) capability of UAVs is an important performance indicator. In the past, people mostly used increased battery power storage to improve the endurance of drones, such as using hydrogen fuel cells, but there were problems such as high cost and poor safety. The Chinese invention patent application with the publication number CN104898690A discloses a "APM platform-based implementat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B64F1/00B64F5/00
CPCB64F1/00
Inventor 石勇张勇邹余洋
Owner CHINA HUALU PANASONIC AVC NETWORKS
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