Automatic Motor Control System for Smart Irrigation system outlines a novel approach to enhancing agricultural practices through automation and technology integration. By employing NodeMCU as the central controller alongside various sensors and a water motor, the system aims to address the critical challenge of water management in agriculture. Real-time monitoring of environmental conditions, including temperature, humidity, and soil moisture levels, enables precise irrigation scheduling. When moisture levels drop below a set threshold, the system triggers the water motor to initiate irrigation, thus ensuring optimal moisture levels for crop growth. The incorporation of an LCD display provides users with instant feedback on sensor readings, facilitating informed decision-making. This automated approach offers several benefits, including increased efficiency, reduced water wastage, and simplified irrigation management, ultimately leading to improved crop yield and conservation of water resources. Overall, the proposed system represents a significant advancement in agricultural technology, offering a cost-effective and efficient solution to optimize irrigation practices and promote sustainable farming.

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An Automatic Motor Control System for Smart Irrigation

  • Radha Senthilkumar,
  • L. Santhoshkumar,
  • M. Ayyappan,
  • M. Amarnath,
  • P. Jayanthi

摘要

Automatic Motor Control System for Smart Irrigation system outlines a novel approach to enhancing agricultural practices through automation and technology integration. By employing NodeMCU as the central controller alongside various sensors and a water motor, the system aims to address the critical challenge of water management in agriculture. Real-time monitoring of environmental conditions, including temperature, humidity, and soil moisture levels, enables precise irrigation scheduling. When moisture levels drop below a set threshold, the system triggers the water motor to initiate irrigation, thus ensuring optimal moisture levels for crop growth. The incorporation of an LCD display provides users with instant feedback on sensor readings, facilitating informed decision-making. This automated approach offers several benefits, including increased efficiency, reduced water wastage, and simplified irrigation management, ultimately leading to improved crop yield and conservation of water resources. Overall, the proposed system represents a significant advancement in agricultural technology, offering a cost-effective and efficient solution to optimize irrigation practices and promote sustainable farming.