Synergic intelligent cluster solar sand-fixing robot

By using a collaborative intelligent cluster of solar-powered sand-fixing robots, which utilize optical focusing and intelligent monitoring systems to melt quicksand, efficient and safe desert sand-fixing operations have been achieved. This has solved the problems of high labor intensity, high carbon emissions, and poor environmental adaptability in existing technologies, and has realized zero-carbon emissions and intelligent multi-vehicle collaborative operations.

CN122300613APending Publication Date: 2026-06-30INST OF DESERT METEOROLOGY CMA URUMQI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
INST OF DESERT METEOROLOGY CMA URUMQI
Filing Date
2026-05-19
Publication Date
2026-06-30

AI Technical Summary

Technical Problem

Existing sand fixation methods are labor-intensive, inefficient, and costly. They rely on fossil fuels and have high carbon emissions. They also lack intelligence and environmental adaptability. Traditional path planning cannot cope with obstacles in the desert, affecting the continuity of sand fixation grids and operational efficiency.

Method used

The system employs a collaborative intelligent cluster of solar-powered sand-fixing robots, comprising multiple sand-fixing robots and a multi-vehicle collaborative operation system. It utilizes an optical focusing system to melt quicksand, an intelligent monitoring system to identify obstacles and plan paths in real time, and a multi-vehicle collaborative operation system to achieve dynamic task allocation and path coordination. It also features fire safety and self-cleaning functions.

Benefits of technology

It has achieved zero-carbon emission, intelligent, multi-vehicle collaborative unmanned sand fixation operation, which improves efficiency and safety, adapts to the desert environment, and solves the problems of high labor intensity, high carbon emissions and poor environmental adaptability in existing technologies.

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Abstract

This invention discloses a collaborative intelligent cluster solar-powered sand-fixing robot, relating to the field of sand-fixing robot technology. It includes multiple sand-fixing robots and a multi-vehicle collaborative operation system. Each sand-fixing robot comprises a frame assembly, a drive assembly, an energy system, an optical focusing system, and an intelligent monitoring system. These components are detachably mounted on the frame assembly. The drive assembly propels the sand-fixing robot to move in the sandy environment. The energy system provides power to the robot. The optical focusing system focuses sunlight onto the sand surface to melt the flowing sand and monitors the focal point temperature in real time for feedback control. This invention provides a zero-carbon, intelligent, multi-vehicle collaborative unmanned sand-fixing equipment, solving the problems of low efficiency, reliance on manual labor, high carbon emissions, poor environmental adaptability, and lack of safety guarantees in existing sand-fixing methods, achieving efficient, precise, and safe desert sand-fixing operations.
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