Sistem Penyiraman Tanaman Otomatis Berbasis IoT Menggunakan ESP32, Moisture Sensor, DHT22 Sensor dan Blynk

Authors

  • Dwianti Westari Politeknik Negeri Indramayu
  • Syaeful Ilman Politeknik Negeri Indramayu

DOI:

https://doi.org/10.55606/jtmei.v3i4.4941

Keywords:

Internet of Things (IoT), NodeMCU ESP32, DHT22 air humidity sensor, soil moisture sensor, Blynk

Abstract

The Internet of Things (IoT) technology has brought innovation to various fields, including agriculture and plantations. One of the main challenges in plant cultivation is maintaining consistent irrigation to ensure that plants receive an optimal amount of water. Improper watering can lead to either water deficiency or excess, negatively impacting plant growth and productivity. An IoT-based automatic irrigation system is designed to address this issue by utilizing soil moisture, temperature, and humidity sensors to accurately determine the water needs of plants. The data collected by the sensors is processed by a microcontroller, which then automatically controls the water pump. Additionally, users can monitor and manage irrigation through a smartphone application, allowing for more efficient and flexible watering. With the implementation of this system, it is expected that productivity and efficiency in plant management, both at the household and commercial farming levels, can be significantly improved.

Downloads

Download data is not yet available.

References

Ahmad, M., & Hassan, R. (2022). "AI-Based Smart Irrigation System for Sustainable Agriculture." Journal of Sustainable Agriculture and Technology, 12(4), 33-41.

Al-Ghobari, H., & Mohammad, F. (2019). "Intelligent Irrigation System for Water Conservation in Agriculture Using IoT." Computers and Electronics in Agriculture, 162, 15-23.

Bhargava, R., & Patel, K. (2023). "Energy-Efficient IoT-Based Irrigation Systems: A Case Study on Solar-Powered Automation." Renewable Energy Journal, 14(3), 75-88.

Erlangga, F., Utami, A.N.L., Ridwang., Adriani., dan Khadijah, St., 2024. “Pengembangan Prototype Smart Sistem Penyiraman dan Pemupukan Tanaman Secara Otomatis Dengan Sistem Monitoring Berbasis IoT.” Jurnal Teknik Elektro UNISMUH (VERTEX ELEKTRO), Vol. 16, No. 2, pp 1-6.

Jain, A., & Singh, P. (2021). "IoT-Based Smart Irrigation System Using Soil Moisture Sensor." International Journal of Agricultural and Biological Engineering, 14(2), 45-51.

Kim, J., & Park, J. (2020). "Wireless Sensor Networks for Precision Agriculture: An IoT Perspective." Journal of Wireless and Mobile Networks, 8(2), 55-67.

Kumar, G.S., Nagaraju, G., Rohith, D., and Vasudevarao, A., 2023. “Design and Development of Smart Irrigation System Using Internet Of Things (IoT) – A Case Study.” Nature Environment and Pollution Technology an International Quarterly Scientific Journal, Vol. 22, No. 1, pp 523-526

Patel, M., & Desai, B. (2020). "Automated Drip Irrigation System Using IoT and Cloud Computing." Journal of Agricultural Informatics, 11(1), 25-34.

Purnomo, H., & Santoso, B. (2018). "Penggunaan Mikrokontroler ESP32 dalam Sistem Penyiraman Tanaman Berbasis IoT." Jurnal Teknik Elektro, 10(2), 100-110.

Rawal S., 2017. “IOT based Smart Irrigation System.” International Journal of Computer Applictions, Vol.159, No. 08, pp 7-11.

Ray, P.P., 2017. “Internet of Things for Smart Agriculture : Technologies, Practies and future Direction.” Journal of Ambient Intellegence and Smart Environments, Vol. 9, Issue. 4, pp 395-420

Setiawan, R., & Widodo, T. (2019). "Rancang Bangun Sistem Irigasi Cerdas Menggunakan Sensor DHT22 dan Mikrokontroler ESP32." Jurnal Teknologi dan Informatika, 6(1), 22-30.

Sharma, R., & Kumar, V. (2021). "Development of a Low-Cost IoT-Based Smart Irrigation System Using NodeMCU ESP8266." Smart Agriculture Journal, 7(3), 12-19.

Zhao, L., & Zhang, Y. (2017). "Smart Agriculture: A Review of IoT-Based Technologies and Their Applications." Sensors, 17(8), 1801.

Downloads

Published

2024-12-30

How to Cite

Dwianti Westari, & Syaeful Ilman. (2024). Sistem Penyiraman Tanaman Otomatis Berbasis IoT Menggunakan ESP32, Moisture Sensor, DHT22 Sensor dan Blynk. Jurnal Teknik Mesin, Industri, Elektro Dan Informatika, 3(4), 314–321. https://doi.org/10.55606/jtmei.v3i4.4941