default image
Adaptive photovoltaic-driven dry depth-time domain intelligent control precision irrigation technology
Ecological agriculture photovoltaic intelligent irrigation: water, fertilizer, increase production and soil health.
Type
Smart irrigation systems
Tags
Ecological agriculture
Agricultural ecology
Intelligent precision irrigation
Photovoltaic drive
Solution maturity
Mass promotion / Mass production
Cooperation methods
Other
Applicable industry
Agriculture, forestry, animal husbandry and fishery
Applications
Agriculture
Key innovations
Integrate adaptive solar power supply, dry deep-time domain irrigation and multi-dimensional intelligent control algorithms to achieve multi-target precise irrigation, significantly improve resource utilization and ecological benefits, and are innovative.
Potential economic benefits
This technology significantly reduces water, fertilizer, medicine, labor, materials and operating costs, reduces pest and disease costs, and at the same time increases production by 20%, comprehensively improving the economic benefits of ecological agriculture.
Potential climate benefits
Solar energy directly reduces emissions, water-saving, fertilizer-saving drugs significantly reduce production and transportation energy consumption and chemical carbon emissions; soil improves carbon sequestration; increase production and improve resource efficiency and reduce carbon emissions.
Solution supplier
View more
Guangzhou University
Guangzhou University
Guangzhou University cultivates innovative talents, deepens academic research, and serves the development of Guangzhou and the Greater Bay Area.
China
Solution details

1. scope of application

 Ecological agriculture.

2. Core technologies and processes

 Adaptive solar photovoltaic panels are used to generate electricity, drive complete equipment such as water pumps and dry deep-time domain irrigators, and provide emergency power supply. Through soil dry depth, water stress duration, and irrigation wet point duration, and multi-dimensional collaborative regulation of crop, soil, and ecological environment indicators is carried out through rotating irrigation and rest irrigation based on time-space-water-fertilizer and pesticide to achieve crop harm reduction (pests and diseases, salt-alkali hazards, agrochemical hazards), as well as water and material conservation, and improvement of soil physical and chemical properties.

3. main technical parameters

 The operating power of the dry deep-time domain irrigator is ≤0.8W; the dry deep-wet point delay is adjustable at 4 levels (0-30 minutes); the accuracy of the dry depth sensor is ±2.5%; the removal and filtration efficiency of harmful substances is 95%; the accuracy of intelligent irrigation decisions is 98%.

4. comprehensive benefits

 Compared with traditional irrigation technologies, the irrigation water utilization rate is 80%; labor is saved by 40%, fertilizers and medicines are saved by 50%, and materials are saved by 40%. The cost of pests and diseases is reduced by 5%; soil remediation capacity is increased by 20%, and the increase in production is increased by about 20%. Management and operation costs are reduced by 15%.

Last updated
01:36:30, Nov 05, 2025
Information contributed by

See original page on

Report