Uebo unmanned machine destruction field problem

Traditional agricultural production currently faces widespread challenges, including low efficiency in manual maintenance, uneven pesticide application, high labor costs, and operational difficulties in mountainous terrain. Manual crop protection—particularly during the mid-to-late stages of crop growth—often leads to crop damage, missed spots, or over-spraying, resulting in suboptimal pest and disease control that hinders stable grain yields and production growth. With the rapid development of smart agriculture, the adoption of crop-protection drones is becoming widespread; these drones offer precise solutions to various field production challenges, injecting new momentum into quality improvement and efficiency gains in modern agriculture.
Compared to traditional manual backpack spraying, crop-protection drones offer distinct advantages. These devices enable intelligent operations with fixed altitude, speed, and application rates. The atomized spray possesses strong penetrative power and ensures high leaf coverage, effectively enhancing the quality of pest and disease control. Operational efficiency far exceeds manual methods; a single drone can cover hundreds of *mu* per day—dozens of times the capacity of manual labor—thereby significantly saving on labor and time costs. Furthermore, drone operations eliminate the need for personnel to enter the fields, mitigating occupational risks. They also allow for precise control of chemical and water usage, reducing waste and soil/water pollution, thereby embodying the principles of green agricultural development.
Today, crop-protection drones are widely used in the maintenance of grain, fruit, and vegetable crops. They effectively address challenges associated with remote plots and tall crops, facilitating the development of large-scale, precision, and eco-friendly agriculture, and serving as a vital technological pillar for rural revitalization and agricultural modernization. To visually demonstrate the effectiveness of these operations, our company conducts field tests using water-sensitive paper. By placing this paper on the top, sides, and undersides of crop leaves, we can clearly observe the uniform adhesion of the spray solution after operation. The equipment’s atomized spray provides comprehensive coverage, thoroughly resolving the limitations of traditional manual methods—which often only wet the leaf surface and leave large “blind spots” for pest control on the underside. By covering even the most concealed parts of the crop, the drones significantly improve the thoroughness of pest and disease control, ensuring high-quality spraying that safeguards stable grain yields and increased income.

The results of spraying the wheat field are as follows:

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The results of spraying the fruit trees are as follows:

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Post time: Sep-04-2026