An Intelligent IoT-Enabled Automated Drip Irrigation System with Real-time Water Level Monitoring and Adaptive Control
K R Shwetha, S M Indushree, J. Chandrashekhara
Asian Journal of Research in Computer Science · pp. 139–151 · Published 25 Jul 2026
10.9734/ajrcos/2026/v19i8897Abstract
Traditional irrigation systems can involve substantial water wastage, uneven water distribution, and high labour requirements. This study developed an intelligent Internet of Things (IoT)-enabled automated drip irrigation system with real-time water-level monitoring and adaptive control. The prototype integrated an ESP32 microcontroller with soil-moisture, temperature, humidity, and ultrasonic water-level sensors, a relay module, a water pump, and a drip irrigation arrangement. Sensor readings and pump status were transmitted to the Smart Irrigation IoT platform for real-time visualisation and remote monitoring. An adaptive threshold-based algorithm controlled pump operation according to soil-moisture conditions while preventing operation when the storage-tank water level was below the minimum threshold. The system was evaluated under controlled prototype conditions using sensing accuracy, response time, and water-saving performance. The recorded soil-moisture, temperature, and humidity accuracies were 97%, 95%, and 94%, respectively. The system achieved 40% water savings relative to conventional manual irrigation under identical test conditions and responded to threshold changes within 2 seconds. The prototype maintained communication with the IoT platform and supported automatic irrigation, water-level protection, remote access, and alert notifications. These findings indicate that the proposed system can support efficient irrigation management at the prototype scale. Long-term field trials across different crops, soil types, and climatic conditions are required to establish its reliability and scalability under practical agricultural conditions.
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