Amber energy transmission mobile charging robot using wireless energy transmission technology and intelligent navigation system

Through wireless energy transmission and intelligent navigation systems, combined with path planning and obstacle detection, it solves the equipment mobility and convenience problems of traditional charging methods, and realizes autonomous navigation and efficient charging.

CN120601562APending Publication Date: 2025-09-05SUZHOU YOUDIAN IOT TECH SERVICE CO LTD
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Patent Information

Application Number
CN202510648308.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-09-05

AI Technical Summary

Technical Problem

Traditional charging methods require fixed charging piles or sockets, which limits the mobility and ease of use of the device.

Method used

It uses wireless energy transmission technology and an intelligent navigation system, combined with path planning, obstacle detection, device identification and docking, energy management, and safety protection, to achieve autonomous navigation and efficient charging.

Benefits of technology

It achieves autonomous navigation and efficient charging in complex environments, provides convenient charging services, and improves the mobility and ease of use of the device.

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Abstract

The invention provides an amber energy transmission mobile charging robot based on a wireless energy transmission and intelligent navigation system. According to the robot, flexible and convenient charging services are provided for various devices through the efficient wireless energy transmission technology, and the limitation of a traditional fixed charging mode is broken through. The method is mainly characterized by comprising the steps of intelligent navigation and obstacle detection, and autonomous path planning and safe obstacle avoidance are realized; equipment identification and automatic docking ensure efficient energy transmission; real-time energy management is achieved, and over-charging or under-charging is prevented; and a friendly man-machine interaction interface and multiple safety protection are realized. Experiments show that the robot can efficiently complete the charging task in various environments, the operation is simple and convenient, and the charging efficiency is high. The system is suitable for families, offices, airports, shopping malls and other places, provides a flexible and safe charging solution for mobile equipment and electric vehicles, remarkably improves the charging convenience and efficiency, and has a wide market application prospect.
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Description

Technical Field

[0001] The present invention relates to the fields of wireless energy transmission and robotics technology, and in particular to an amber energy-transmitting mobile charging robot utilizing wireless energy transmission technology and an intelligent navigation system. Background Art

[0002] With the increasing popularity of electronic devices and electric vehicles, the demand for charging is increasing. Traditional charging methods typically require fixed charging stations or outlets, limiting the mobility and usability of devices. The development of wireless energy transmission technology offers a new approach to addressing this problem. By integrating intelligent navigation systems, mobile charging robots can provide convenient charging services for devices without spatial constraints. Therefore, the development of an Amber Energy Transfer mobile charging robot is particularly important. Summary of the Invention

[0003] This invention provides an Amber Energy Transfer mobile charging robot, which uses wireless energy transmission technology and an intelligent navigation system to provide convenient charging services for various devices. The specific steps are as follows: Wireless energy transfer Transmitter unit: Generates and transmits wireless energy signals to ensure efficient energy transmission.

[0004] Receiving unit: Receives signals fed back by the device to adjust the direction and intensity of energy transmission and optimize charging efficiency.

[0005] Intelligent navigation and positioning Path planning system: Based on the environment map and real-time sensor data, it plans the optimal movement path to ensure that the robot reaches the target location efficiently.

[0006] Obstacle Detection System: Utilizes multiple sensors (such as lidar and ultrasonic sensors) to detect and avoid obstacles in real time, ensuring safe movement.

[0007] Device identification and docking Identification system: Use RFID or image recognition technology to identify the type and location of the device to be charged.

[0008] Docking system: Automatically adjusts the robot position to ensure optimal docking for energy transfer.

[0009] Energy Management Energy monitoring unit: monitors the robot's power status and energy consumption in real time to ensure continuous operation.

[0010] Charging control unit: Dynamically adjusts energy output according to the charging needs of the device to prevent overcharging or undercharging.

[0011] User interaction and security Display screen and control panel: used to display the robot status and receive user instructions, providing a friendly user interface.

[0012] Safety protection system: includes overload protection and emergency shutdown mechanism to ensure the safety of the charging process.

[0013] Experimental results and applications Experimental setup: In the experiment, the robot's navigation ability and charging efficiency were tested in different environments to verify its performance and reliability.

[0014] Results Analysis: Experimental results show that the robot can efficiently complete charging tasks and achieve autonomous navigation in complex environments. User feedback shows that the robot is easy to operate and has high charging efficiency.

[0015] Application areas: Home and office: Provide convenient charging services for home appliances and office equipment.

[0016] Public facilities: Provide flexible charging solutions for mobile devices and electric vehicles in public places such as airports and shopping malls.

Claims

1. An Amber Energy Transfer Mobile Charging Robot, characterized in that: The robot provides convenient charging services for various devices through wireless energy transmission technology and intelligent navigation system. The robot includes the following components: Wireless energy transmission module: a) A transmitting unit, configured to generate and transmit wireless energy signals. b) A receiving unit, used to receive signals fed back by the device to adjust the direction and intensity of energy transmission. Intelligent navigation module: a) Path planning system, which plans the optimal movement path based on the environment map and real-time sensor data. b) Obstacle detection system, which uses multiple sensors (such as lidar and ultrasonic sensors) to detect and avoid obstacles in real time. Device identification and docking module: a) Identification system, using RFID or image recognition technology to identify the type and location of the device to be charged. b) Docking system, which automatically adjusts the robot position to ensure optimal docking for energy transfer. Energy management module: a) Energy monitoring unit, which monitors the robot's power status and energy consumption in real time. b) Charging control unit, dynamically adjusts energy output according to the charging needs of the device. User interaction module: a) Display screen and control panel, used to display the robot status and receive user instructions. b) Mobile application interface, which allows users to remotely monitor and control the robot via a smartphone application. Safety and protection module: a) Overload protection system to prevent overload during energy transmission. b) Safety shutdown mechanism, which automatically stops energy transmission and moving operations in emergency situations.

2. The robot according to claim 1, characterized in that The wireless energy transmission module further comprises: a) Energy focusing technology, used to improve the efficiency and range of energy transmission.

3. The robot according to claim 1, characterized in that The intelligent navigation module further includes: a) Autonomous learning algorithm, which optimizes navigation paths and obstacle avoidance strategies through machine learning technology.

4. The robot according to claim 1, characterized in that The device identification and docking module further includes: a) a multi-device management function that supports simultaneous identification and docking of multiple devices.

5. The robot according to claim 1, characterized in that The energy management module further comprises: a) Energy recovery system, which uses unused energy to recharge the robot itself.

6. The robot according to claim 1, characterized in that The user interaction module further includes: a) Voice control function, supports operation through voice commands.

7. The robot according to claim 1, characterized in that The safety and protection module further includes: a) Data encryption technology ensures the security of user data and device information. The Amber Energy Transfer mobile charging robot provides users with efficient and safe charging solutions through its innovative design and multifunctional modular structure. It is suitable for a variety of environments such as homes, offices and public places.