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Topic

Technologies and technical equipment for agriculture and food industry

Volume

Volume 69 / No. 1 / 2023

Pages : 417-426

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AN IOT-ENABLED DESIGN FOR REAL-TIME WATER QUALITY MONITORING AND CONTROL OF GREENHOUSE IRRIGATION SYSTEMS

DESAIN PERANGKAT BERBASIS IOT UNTUK PEMANTAUAN DAN PENGENDALIAN KUALITAS AIR PADA SISTEM IRIGASI RUMAH KACA

DOI : https://doi.org/10.35633/inmateh-69-39

Authors

(*) Irfan ARDIANSAH

Department of Agroindustrial Technology, Faculty of Agroindustrial Technology, Universitas Padjadjaran, Indonesia

Ryan Ganesha CALIBRA

Department of Agroindustrial Technology, Faculty of Agroindustrial Technology, Universitas Padjadjaran, Indonesia

Nurpilihan BAFDAL

Department of Agriculture Engineering and Biosystem, Faculty of Agroindustrial Technology, Universitas Padjadjaran, Indonesia

Awang BONO

Department of Chemical Engineering, Faculty of Engineering, Universiti Malaysia Sabah, Malaysia

Edy SURYADI

Department of Agriculture Engineering and Biosystem, Faculty of Agroindustrial Technology, Universitas Padjadjaran, Indonesia

Siti NURHASANAH

Department of Food Industrial Technology, Faculty of Agroindustrial Technology, Universitas Padjadjaran, Indonesia

(*) Corresponding authors:

[email protected] |

Irfan ARDIANSAH

Abstract

Because hydroponic plant nutrient is dissolved in the water, water quality management is essential for growing healthy plants. Taking care of the total dissolved solids (TDS) and the pH (water acidity) is essential. The purpose of this research is to create a IoT-based water quality monitoring device. The average TDS after 30 days of automation with an Arduino UNO was 1162.82 ppm, and the gadget kicked on the nutrient pump whenever the TDS fell below 1000 ppm or the EC fell below 2. The mechanism self-adjusts the pH when it falls below 5.5 or rises above 6.5, with a mean of 6.17.

Abstract in Indonesian

Karena nutrisi tanaman hidroponik terlarut di dalam air, manajemen kualitas air sangat penting untuk menanam tanaman yang sehat. Menjaga total dissolved solid (TDS) dan pH (keasaman air) sangat penting. Tujuan dari penelitian ini adalah untuk membangun perangkat pemantauan kualitas air berbasis IoT. Rata-rata TDS setelah 30 hari otomatisasi dengan Arduino UNO adalah 1162.82 ppm, dan alat ini akan menyalakan pompa nutrisi setiap kali TDS turun di bawah 1000 ppm atau EC turun di bawah 2. Mekanisme ini akan menyesuaikan pH ketika turun di bawah 5.5 atau naik di atas 6.5, dengan rata-rata 6.17.

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