Sistem Monitoring Kondisi Kelembapan dan pH Tanah Berbasis Internet of Things (IoT) untuk Tanaman Hias
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Manual monitoring of soil moisture and pH often hinders the growth of ornamental plants, posing a challenge for hobbyists. This study addresses this issue by developing an Internet of Things (IoT) based monitoring system using a Research and Development (R&D) method. A functional prototype was built with an ESP32 microcontroller, a capacitive moisture sensor, and a pH sensor, which transmits real-time measurement data to the Blynk mobile application. Following a systematic sensor calibration process, test results confirmed the system's ability to accurately and responsively present moisture and pH data. All system functionalities, from data visualization to notifications, were successfully verified. The system is proven to be a functional and practical solution, enabling users to shift from intuitive care to precise, data-driven maintenance for optimal plant growth.
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References
Hamidah, H. (2023). Budidaya Tanaman Hias Skala Rumah Tangga. Jurnal Pengabdian Kreativitas Pendidikan Mahakam (JPKPM), 3(2), 140-144. https://doi.org/10.24903/jpkpm.v3i2.1503.
Manalu, D. K., Fitriyah, H., & Widasari, E. R. (2022). Pengendalian Kelembaban dan PH pada Alat Semai Otomatis berdasarkan Sensor Kelembaban, PH, dan Arduino menggunakan Regresi Linier. Jurnal Pengembangan Teknologi Informasi dan Ilmu Komputer, 6(4), 1653-1660.
O’Kennedy, S. (2022). Soil pH and its impact on nutrient availability and crop growth. International Journal of Geography, Geology and Environment, 4(2), 236-238.
Okpatrioka, O. (2023). Research and development (R&D) penelitian yang inovatif dalam pendidikan. Dharma Acariya Nusantara: Jurnal Pendidikan, Bahasa dan Budaya, 1(1), 86-100.
Ramadhan, M. S., Wahyuddin, M. I., & Nuraini, R. (2022). Detektor Kondisi Tingkat Kelembaban Tanah pada Tanaman Hias Menggunakan Nodemcu Esp8266 Berbasis IoT. Jurnal JTIK (Jurnal Teknologi Informasi dan Komunikasi), 6(2), 296-303. https://doi.org/10.47861/jdan.v1i1.154.
Salam, A. K. (2020). Ilmu Tanah, Akademika Pressindo.
Setiawan, Z., Hiswara, A., & Muthmainah, H. N. (2023). Mengoptimalkan jaringan sensor nirkabel dalam aplikasi monitor lingkungan dengan teknologi iot di indonesia. Jurnal Multidisiplin West Science, 2(10), 858-867.
Slamet, F. A. (2022). Model Penelitian Pengembangan (R n D). Malang: Institut Agama Islam Sunan Kalojogo Malang.
Sudarmaji, A., Gunawan, B., Nugraha, F., Arini, N., & Mulyani, S. (2024). Smart Soil Moisture Control Based on IoT ESP-32 for Horticulture Cultivation in Coastal Area. In BIO Web of Conferences (Vol. 96, p. 04001). EDP Sciences. https://doi.org/10.1051/bioconf/20249604001.
Suryana, T. (2021). Capacitive Soil Moisture Sensor Untuk Mengukur Kelembaban Tanah.
Syarif, M., & Risdiansyah, D. (2024). Pemanfaatan Metode Prototype Dalam Perancangan Sistem Informasi Penjualan Berbasis Website. JATI (Jurnal Mahasiswa Teknik Informatika), 8(4), 7945-7952.
Tembusai, Z. R., & Armando, B. (2024). Sistem monitoring kualitas tanah tanaman hias berbasis IoT dengan sensor pH. Jurnal Minfo Polgan, 13(2), 2030-2035. https://doi.org/10.33395/jmp.v13i2.14364.
Wijaya, S., Samsumar, L. D., & Efendi, M. M. (2024). PERANCANGAN SISTEM MONITORING KELEMBAPAN DAN PENYIRAMAN OTOMATIS TANAMAN JAGUNG BERBASIS INTERNET OF THINGS. Journal of Computer Science and Information Technology, 1(4), 267-276. https://doi.org/10.70248/jcsit.v1i4.1253.