IoT Sistem Monitoring Dan Kontroling Kelembaban Tanah Pada Tanaman

Authors

  • Nanang Budi Pasetyo Universitas Nusantara PGRI Kediri
  • Rini Indriati Universitas Nusantara PGRI Kediri
  • Rina Firliana Universitas Nusantara PGRI Kediri

DOI:

https://doi.org/10.59581/jusiik-widyakarya.v2i1.2812

Keywords:

IoT, Soil Moisture, Automated Systems

Abstract

Modern agriculture increasingly relies on technology to increase efficiency and productivity, so that humans nowadays always need tools that can make their work easier, especially for monitoring soil moisture. in presenting a soil moisture control monitoring system tool, which can be used by the community for efficient gardening. Where the system uses microcontroller technology which has been developed internationally. The creation of this system aims to make gardening easier. From the case studies raised in this research, the lack of efficient soil moisture affects plant growth. A system was created to produce a tool for controlling and monitoring soil moisture conditions in waterfall method plants. The stages of this research include analysis, system design, implementation, testing and maintenance. The implication of this research is the optimization of the gardening process by farmers in maintaining soil moisture by automatically turning on and turning off buttons. This system is based on IoT which is a soil moisture sensor using a soil moisture sensor & I2C LCD as a monitoring tool. It is said that the soil is damp if the water content is 60% -80%, if it is less than this then the water pump will turn on automatically.

References

A. D. Permadi, I. S. Hardhienata, and A. Chairunnas, “Model Sistem Penyiraman Dan Penerangan Taman Mengguanakan Soil Moisture Sensor Dan RTC (Real Time Clock) Berbasis Arduino Uno,” no. S4, 2009.

A. Fadholi, “Pemanfaatan Suhu Udara dan Kelembaban Udara dalam Persamaan Regresi untuk Simulasi Prediksi Total Hujan Bulanan di Pangkalpinang,” Cauchy, vol. 3, no. 1, p. 1, 2013, doi: 10.18860/ca.v3i1.2565.

A. Karumbaya and G. Satheesh, “IoT Empowered Real Time Environment Monitoring System,” International Journal Of Computer Applications, vol.129, no.5, p.975,2015

A. Lado and S. Yahaya., “Productivity of Tomato (Solanum lycopersicon L.) as affected by Cultivar and Organic amendment in Kano,” Journal of Organic Agriculture and Environment, vol. 6, no. 1, p. 17, 2018.

F. Tongke, “Agriculture Technology Paths to Global Climate Stability: Energy for a Greenhouse Planet,” Journal Scines Compass, vol 298,no 88,p.981,2009

G. Alicia, “New Media Ar, Design and the Arduino Microcontroller,” Internasional Conference on Control and Automotion (ICCA), vol.6,no 19, p.98,2013.

G. Kenetch, “Effective monitoring of agriculture,” Journal Enviromental Monitoring, vol. 14, p. 723, 2012.

I. Gunawan, T. Akbar, and M. Giyandhi Ilham, “Prototipe Penerapan Internet Of Things (Iot) Pada Monitoring Level Air Tandon Menggunakan Nodemcu Esp8266 Dan Blynk,” Infotek J. Inform. dan Teknol., vol. 3, no. 1, pp. 1–7, 2020, doi: 10.29408/jit.v3i1.17

J. Francisco, “Developing Ubiquitous Sensor Network Platform Using Internet of Things: Application in Precision Agriculture,” Journal of Ambient Intellig

M. I. Hoffert, “Advanced Technology Paths to Global Climate Stability: Energy for a Greenhouse Planet,” Journal Scines Compass, vol. 298, no. 88, p. 981, 2009.

Muhammad Andhika Dharmawan, Rini indriati, Sucipto, “Implementasi Sistem Informasi Tugas Akhir Metode Classic Life cycle,” Jurnal Prosiding SEMNAS INOTEK, vol. 151, no. 3, p. 3, 2019

N. Hidayati, L. Dewi, M. F. Rohmah, and S. Zahara, “Prototype Smart Home Dengan Modul NodeMCU ESP8266 Berbasis Internet of Things (IoT),” Tek. Inform. Univ. Islam Majapahit, pp. 1–9, 2018.

N. M. Damastu, “Studi Eksperimen dan Kajian Numerik Aliran Fluida Pada Nosel Diameter 0,3 mm,” 2016, [Online]. Available: http://repository.unpas.ac.id/id/eprint/12936%0A.

N. Sakthipriya, “An Effective Method for Crop Monitoring Using Wireless Sensor Network,” Middle-East Journal of Scientific Research, vol. 20, no. 9, p. 1127, 2014.

R. Alexander, “Greenhouse gases: the choice of volatile anesthetic doesmatter,” Canadian Journal of Anesthesia, vo.65, no 2, p.221,2018

R. Hong, “Constant, Fluctuating and Evective Temperature and Seed Longevity: a Tomato (Lycopersicon esculentum Mill.) Exemplar,” Journal of Annalis Botany Company, vol. 8, no. 13, p. 25, 2015.

R. Shamhiri., “Advances in greenhouse automation and controlled environment agriculture A transition to plant factories and urban agriculture,” Int Journal Agric & Biol Eng, vol. 11, no. 1, p. 2, 2018.

Sofiana Yuli Damayanti, Teguh andriyanto, Aidina Ristiawan, “Sistem Monitoring Kualitas Air Tambak Ikan Koi ( Cyprinus Carpio) Berbasis Tenologi Internet Of Things (IoT),”Jurnal Prosiding SEMNAS INOTEK, vol. 141, p. 2, 2021

Tri Kurniasih, Rini indriati, Rina firliana, “Sistem pemberantasan hama tanaman cabe,” Jurnal Prosiding SEMNAS INOTEK, vol. 059, no. 3, p. 3, 2020.

V. S. Windyasari and P. A. Bagindo, “Rancang Bangun Alat Penyiraman Dan Pemupukan Tanaman Secara Otomatis Dengan Sistem Monitoring Berbasis Internet Of Things 1,” 2019.

Y. Jitsuyama, “The Processing Tomato Culvivar ‘Natsunoshun’ is Susceptible to an Excess or Lack of Soil Mouisture after the Flowering Stage,” The Horticulture Journal, vol. 1, no. 1, pp.25,2017.

Downloads

Published

2024-02-15

How to Cite

Nanang Budi Pasetyo, Rini Indriati, & Rina Firliana. (2024). IoT Sistem Monitoring Dan Kontroling Kelembaban Tanah Pada Tanaman. Jurnal Sistem Informasi Dan Ilmu Komputer, 2(1), 249–256. https://doi.org/10.59581/jusiik-widyakarya.v2i1.2812