Felix Gemlack Ngasoh, Terry Bonchak
Advanced technology plays significant roles in agriculture, particularly in automating labor-intensive tasks like watering. This research aimed to develop a laboratory-based automated irrigation system to serve as a teaching aid for students and farmers, enabling energy savings, water conservation, and precise delivery of water to plants when needed. The prototype incorporates a soil moisture sensor, Arduino Uno, relay module, DC motor, and battery. The motor pump's operation is controlled based on the soil's moisture content, with specific sensor values determining when to start or stop irrigation (0 < SV < 300 for activation and SV ≥ 300 for deactivation). If implemented on farms, this system could alleviate the challenges of manual irrigation and help combat issues like forgetfulness in irrigation scheduling. This innovation aims to enhance the efficiency of irrigation practices and ensure optimal water supply, ultimately leading to improved crop yield and sustainability in agriculture.
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