Qfeeltech (Beijing) Co., Ltd. (20240210960). FLOOR MATERIAL RECOGNITION METHOD, CONTROL METHOD, AND STORAGE MEDIUM simplified abstract

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FLOOR MATERIAL RECOGNITION METHOD, CONTROL METHOD, AND STORAGE MEDIUM

Organization Name

Qfeeltech (Beijing) Co., Ltd.

Inventor(s)

Zhanglin Liu of Beijing (CN)

Wulin Tian of Beijing (CN)

FLOOR MATERIAL RECOGNITION METHOD, CONTROL METHOD, AND STORAGE MEDIUM - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240210960 titled 'FLOOR MATERIAL RECOGNITION METHOD, CONTROL METHOD, AND STORAGE MEDIUM

The present disclosure pertains to a smart home technology, specifically a method for recognizing floor materials, controlling an autonomous mobile device, and storing data related to this process.

  • Transmit control instructions to the autonomous mobile device, directing it to rotate at the same location for a predetermined angle.
  • Determine the floor material by comparing the predetermined rotation angle with the actual rotation angle of the device.
  • Enable the autonomous mobile device to automatically recognize different floor materials and adjust its functions, work modes, or velocities accordingly.
  • Ensure consistent moving velocities on various floor materials for the autonomous mobile device.

Potential Applications: - Home automation systems - Industrial cleaning robots - Smart appliances with autonomous navigation capabilities

Problems Solved: - Efficient recognition of floor materials - Seamless transition between different surfaces for autonomous devices

Benefits: - Enhanced performance of autonomous mobile devices - Improved adaptability to different environments - Streamlined operation in smart home settings

Commercial Applications: Title: "Smart Floor Material Recognition Technology for Autonomous Devices" This technology can be utilized in industries such as home automation, robotics, and smart appliances to enhance the efficiency and adaptability of autonomous devices in various environments.

Prior Art: Readers can explore prior research on floor material recognition methods in robotics and smart home technologies to understand the evolution of this innovation.

Frequently Updated Research: Stay updated on advancements in floor material recognition technology, autonomous navigation systems, and smart home integration to leverage the latest developments in this field.

Questions about Smart Floor Material Recognition Technology: 1. How does this technology improve the performance of autonomous mobile devices in smart home environments? - This technology allows autonomous devices to recognize different floor materials and adjust their functions accordingly, enhancing their efficiency and adaptability in smart home settings.

2. What are the potential applications of floor material recognition methods in industries beyond smart homes? - Floor material recognition methods can be applied in industrial settings for cleaning robots, warehouse automation, and other autonomous systems to improve their performance and adaptability.


Original Abstract Submitted

the present disclosure relates to the technical field of smart home, and in particular, to a floor material recognition method, a control method, and a storage medium. the recognition method for the autonomous mobile device for recognizing the floor material includes: transmitting control instructions to the autonomous mobile device, the control instructions including commands that instruct the autonomous mobile device to rotate at a same location for a predetermined rotation angle; obtaining an actual rotation angle of the autonomous mobile device; determining a floor material based on the predetermined rotation angle and the actual rotation angle, such that the autonomous mobile device can automatically recognize different floor materials, and execute different functions or work modes, or automatically configure different set velocities based on the different floor materials, such that the autonomous mobile device can reach substantially consistent actual moving velocities when moving on the different floor materials.