This study developed an Internet of Things (IoT)-based soil moisture monitoring and automatic irrigation system for oil palm seedlings in the main nursery using an ESP32 microcontroller and a YL-69 soil moisture sensor. The proposed system integrates a relay module, a water pump, and the Blynk Cloud platform to provide real-time soil moisture monitoring, threshold-based automatic irrigation, and cloud-based remote monitoring within a single IoT platform. A prototype-based development approach consisting of problem identification, system design, implementation, testing, and evaluation was employed. Experimental evaluation conducted over a four-week period demonstrated that the developed prototype successfully differentiated dry, moist, and wet soil conditions, transmitted soil moisture data to the Blynk dashboard through a Wi-Fi connection in real time, automatically controlled irrigation based on a predefined soil moisture threshold, and maintained an average daily irrigation volume of 498.75 mL. The system also implemented a consecutive-reading confirmation mechanism to improve operational stability by reducing unnecessary relay switching caused by temporary sensor fluctuations. These findings indicate that the proposed system successfully integrates real-time soil moisture monitoring, threshold-based automatic irrigation, and cloud-based remote monitoring into a single IoT platform for supporting automated irrigation management of oil palm seedlings in the main nursery.
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