Wireless charging relay system and method for unmanned gyroplane

A wireless charging and unmanned rotor technology, which is applied in electric vehicle charging technology, current collectors, electric vehicles, etc., can solve problems such as the inability to automatically find a charging platform, the inability to automatically charge and power off, and the inability to realize a shared platform, etc., to achieve The effect of compact structure, reasonable design and low cost

Inactive Publication Date: 2018-01-19
罗榕 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] In addition, although "Wireless Energy Transmission Technology", patent CN201611027085.8 UAV and CN201610439072.5 wireless charging UAV all provide a wireless charging method, they cannot automatically find a charging platform, cannot automatically charge and power off, and cannot suitable for commercialization
It uses a fixed-wing UAV, which is very large, and the wings are basically not less than one meter; it cannot realize a shared platform, and its principle is complicated

Method used

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  • Wireless charging relay system and method for unmanned gyroplane
  • Wireless charging relay system and method for unmanned gyroplane
  • Wireless charging relay system and method for unmanned gyroplane

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Embodiment Construction

[0047] Such as Figure 1-6 As shown, the wireless charging relay system of the rotor UAV of the present embodiment includes a processor and a wireless charging board receiving end 4, a cloud server, a mobile control terminal of the UAV, and a column arranged on the UAV with a camera. , the charging platform 3 arranged on the column and used for placing the drone, and the label device arranged on the column and showing the unique fixed ID corresponding to the column;

[0048]The charging platform 3 is electrically connected to the mains and / or a solar panel 1 for charging the charging platform 3 is provided on the column;

[0049] The charging platform 3 transmits electromagnetic waves to the wireless charging board receiving end 4, and the wireless charging board receiving end 4 receives the electromagnetic waves and converts the electromagnetic waves into electrical energy and charges the battery module of the drone;

[0050] When the drone is docked on the charging platform...

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Abstract

The invention relates to a wireless charging relay system and a method for an unmanned gyroplane. The system comprises a processor arranged on an unmanned gyroplane with a camera, a wireless chargingboard receiving end, a cloud server, a mobile control terminal of the unmanned gyroplane, a stand column, a charging platform arranged on the stand column and used for containing the unmanned gyroplane, and a label device arranged on the stand column and used for displaying a unique fixed ID corresponding to the stand column. The charging platform is electrically connected with a mains supply and / or a solar cell panel used for charging the charging platform is arranged on the stand column. The charging platform transmits electromagnetic waves to the wireless charging board receiving end. Thewireless charging board receiving end receives the electromagnetic waves and converts the electromagnetic waves into electric energy for charging the battery module of the unmanned gyroplane. The processor of the unmanned gyroplane is electrically connected with the camera. The processor of the unmanned gyroplane receives the electric quantity information of the battery module of the unmanned gyroplane. The system is reasonable in design, compact in structure and convenient to use.

Description

technical field [0001] The invention relates to a wireless charging relay system and method for a rotor drone. Background technique [0002] Unmanned aerial vehicle (unmanned aerial vehicle, uav), also known as unmanned aircraft, or unmanned aerial vehicle, is a reusable, remote control or pre-set program flight, capable of carrying a certain load, does not require a driver aircraft. According to its aerodynamic structure, it can be generally divided into four categories: fixed-wing UAVs, UAVs, flapping-wing UAVs, and hybrid structure UAVs. [0003] UAVs have been widely used in many fields due to a series of advantages such as sustainable battery life, high flying altitude, and portable external equipment. Especially in recent years, with the development of micro-electro-mechanical systems (mems), micro-inertial navigation (mmu) and control theory, the research on small unmanned aerial vehicles with the advantages of vertical take-off and landing (vtol) and strong maneuve...

Claims

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Application Information

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Patent Type & AuthorityApplications(China)
IPC IPC(8): G05D1/10G07F15/00H02J7/02
CPCY02T90/12
Inventor罗榕朱震齐浩然
Owner罗榕