![]() ![]() Finally, an automated irrigation was successfully designed and assembled. The output was the device that controlled the irrigation system’s activation and deactivation according on the moisture content of the soil. The control unit was built with an Arduino-based ATMega328 microprocessor. Detecting soil moisture with a YL-69 soil sensor (a resistance type sensor). ![]() The system is made up of three key parts: a moisture detection section, a system control section, and an output portion. In carrying out the study, three specific objectives were adopted thus To develop a system that will reduce human interference and ensure proper irrigation, to minimize water loss and to maximize the efficiency of water used, t o prevent over labour of the pumping machine and prevent it from getting bad or burned. The system consists of a microcontroller, sensors, and water pump integration with a decision-making system. The main thrust for embarking on this study is on design and implementation of irrigation system. ![]()
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