Prototype Smart Garden Berbasis Internet of Things dengan Monitoring dan Kontrol Otomatis

Authors

  • Yasmin Nazwa Tria Azura Universitas Budi Darma
  • Aura Shafa Universitas Budi Darma
  • Obenus Ndruru Universitas Budi Darma
  • Saripah Aulia Universitas Budi Darma

DOI:

https://doi.org/10.55606/jutiti.v6i1.7354

Keywords:

Automatic Watering, Blynk, Internet of Things, Smart Garden, Soil Moisture

Abstract

This study aims to design and test a Smart Garden prototype based on the Internet of Things (IoT) for automatic plant watering monitoring and control. The system was developed to address problems associated with manual watering, which is often inconsistent, inefficient, and may lead to under-watering or over-watering conditions. The prototype integrates a capacitive soil moisture sensor, NodeMCU ESP8266 microcontroller, relay module, water pump, and the Blynk application as a remote monitoring and control interface. The system is designed to read soil moisture conditions in real time and transmit data to the microcontroller for processing. Based on predefined threshold values, the system automatically activates the water pump when the soil is dry and stops irrigation when the moisture level reaches the optimal range. The test results indicate that the system is capable of maintaining soil moisture within the required range while improving irrigation accuracy. In addition, the system helps reduce unnecessary water consumption compared to conventional manual watering methods. Therefore, the proposed IoT-based Smart Garden prototype is effective, efficient, and reliable in supporting automatic plant care and providing a practical solution for modern smart agriculture applications in household environments. 

Downloads

Download data is not yet available.

References

Althaf, S., Hussain, S. J., & Dendukuri, L. S. (2024). Smart Sensors and NodeMCU ESP8266-Based Automated Irrigation System for Effective Water Management in Agriculture. International Journal for Research in Applied Science & Engineering Technology (IJRASET), 12(9).

Darmawan, T. R., Achmad, J., Setiawan, W., & Widianti, A. K. (2026). Designing An Internet of Things (Iot)-Based Smart Irrigation System For Kampunganyar Village, Banyuwangi. Journal of Computer Science, Information Technology and Telecommunication Engineering (JCoSITTE), 7(1), 1049–1058. https://doi.org/10.30596/jcositte.v7i1.27093

Diyajeng Luluk Karlina (2025). Desain dan Implementasi Sistem Penyiraman Otomatis Berbasis IoT Menggunakan Mikrokontroler ESP. Jupiter: Publikasi Ilmu Keteknikan Industri, Teknik Elektro dan Informatika, 3(2). https://doi.org/10.61132/jupiter.v3i2.762

Dinda Fitria Pida, et al. (2025). Dampak Urbanisasi terhadap Perkembangan Kota di Indonesia: Tinjauan dari Aspek Ekonomi Pembangunan. WISSEN : Jurnal Ilmu Sosial dan Humaniora, 3(1). https://doi.org/10.62383/wissen.v3i1.562

Fawaiqur, A., Malik, M., & Mansyur, S. (2024). Prototype Sistem Monitoring Smart Green House Berbasis Internet of Things (Iot) Pada Tanaman Selada. Jurnal Teknik Industri Manajemen Dan Manufaktur, 1(1), 25–38.

Firmansyah, W., Rosyidi, L., & Munir, S. (2025). Pemanfaatan Internet of Things Dalam Sistem Smart Garden Untuk Kontrol Dan Monitoring Tanaman. Journal of Digital Business and Technology Innovation (DBESTI), 2(1), 71–77.

Firwansyah, A., & Suharjo, I. (2024). Implementasi Smart Garden Untuk Monitoring Dan Otomatisasi Tanaman Terong Berbasis Internet of Things Menggunakan Aplikasi Android. Jurnal Information System & Artificial Intelligence, 5(1), 228–237.

Hamdoon, W., & Zengin, A. (2023). A Proposed Smart Irrigation Management System Based On The Iot And Cloud Computing Technologies. Middle East Journal of Science, 9(1), 42–56.

Islamy, I., & Wisudawati, L. M. (2023). Sistem Monitoring Smart Garden Tanaman Cabai Berbasis IoT Menggunakan Protokol MQTT, Node Red, dan Telegram Bot. Teknotan, 17(3), 197–206. https://doi.org/10.24198/jt.vol17n3.6

Liu, X., Zhao, Z., & Rezaeipanah, A. (2025). Intelligent and automatic irrigation system based on Internet of Things using fuzzy control technology. Scientific Reports, 15(1), 1–19.

Marzuki, A. H., & Taufik, I. (2025). Implementasi Smart Garden Berbasis Internet of Things Mengunakan Esp 32. Journal of Composite Social Humanisme, 2(2), 8–21.

Muhammad Bintang, et al. (2025). OTOMATISASI SISTEM ANALISIS KEBUTUHAN AIR PADA TANAMAN SELADA DENGAN METODE FUZZY MAMDANI. Jurnal Elektronika dan Komputer, 18(1). https://doi.org/10.51903/elkom.v18i1.2577

Nahrowi, D., Noerdin, I. N. W., & Putra, A. N. S. (2025). Pengembangan Prototipe Sistem Smart Garden Berbasis Internet of Things dan Android dengan Memanfaatkan Sistem Energi Terbarukan. Jurnal Sains Dan Teknik, 1(1), 1–9.

Naufal, F., Ariyanto, E., & Nuha, H. H. (2023). Peningkatan Pertumbuhan Tanaman Cabai Menggunakan Smart Garden Berbasis IoT. LOGIC: Jurnal Penelitian Informatika, 1(1), 79–85.

Nova Ria Sar, et al. (2023). Pengembangkan dan Memonitoring Tanaman Hidroponik dan Saluran Pengairan Sawah di Lembang Randan Batu. Publikasi Hasil Pengabdian dan Kegiatan Masyarakat, 1(5). https://doi.org/10.61132/aspirasi.v1i5.363

Oktavia, et al. (2025). Rancang Bangun Prototype Sistem Monitoring dan Kontrol Suhu dan Kelembaban pada Multi-Kubikel Berbasis IoT. Jurnal Elektronika dan Komputer, 18(2). https://doi.org/10.51903/elkom.v18i2.3292

Romadan, D. P., Arinal, V., Sarimole, F. M., & Tundo. (2025). Prototype of Soil Moisture Monitoring System for Chili Plants Based on Internet of Things Using Fuzzy Logic Method with NodeMCU ESP8266, Blynk, and ThingSpeak. MALCOM: Indonesian Journal of Machine Learning and Computer Science, 5(1), 130–140.

Sinaga, D. C. P., Marpaung, E. A. P., Hasugian, P. S., Amallia, D. N., & Setiawan, C. (2025). Perancangan Smartgarden Berbasis Internet of Things Untuk Monitoring dan Kontrol Nutrisi Tanaman. Jurnal SAINTIKOM (Jurnal Sains Manajemen Informatika Dan Komputer), 24(1), 9–19.

Downloads

Published

2026-04-30

How to Cite

Yasmin Nazwa Tria Azura, Aura Shafa, Obenus Ndruru, & Saripah Aulia. (2026). Prototype Smart Garden Berbasis Internet of Things dengan Monitoring dan Kontrol Otomatis. Jurnal Teknik Informatika Dan Teknologi Informasi, 6(1), 474–488. https://doi.org/10.55606/jutiti.v6i1.7354

Similar Articles

1 2 3 4 5 > >> 

You may also start an advanced similarity search for this article.