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Application Monitoring Design of Water Tank Volume and Clarity System using LabView NI MYRIO Erwin Nurdiansyah; Chasrun Hasani; Amrul Faruq
Kinetik: Game Technology, Information System, Computer Network, Computing, Electronics, and Control Vol 2, No 4, November-2017
Publisher : Universitas Muhammadiyah Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (159.187 KB) | DOI: 10.22219/kinetik.v2i4.206

Abstract

A traditional controlling and measuring system both in home industry and factory have many constraints especially in the field of quality and efficiency. Operators have to control and monitor while the tank is in the water filling mode. Consequently, an effective system is needed to increase the ease in industry operation. In this work, an application design of water volume in tank and clarity system has presented using RF04 ultrasonic sensor to detect water level; furthermore, a turbidity sensor was also employed to detect water clarity. Both of them were controlled by National Instrument (NI) myRIO-1900. NI myRIO was used in this work as a controller having automatic on/off relay module employed to the water tank and integrated with a personal computer as human machine interface system (HMI). NI LabView software used as HMI in this work was also connected to Wi-Fi module to establish a remote monitoring role. As a result, the simulation shows that water level can be measured utilizing ultrasonic sensor as well as turbidity sensor detection for water clarity.
Implementasi Smart Greenhouse Berbasis IoT untuk Digitalisasi Pengelolaan Greenhouse pada Kelompok Tani Mekar Jaya Satu Chasrun Hasani; Basri Cahyadi
JURIBMAS : Jurnal Hasil Pengabdian Masyarakat Vol 5 No 1 (2026): Juli 2026
Publisher : LKP KARYA PRIMA KURSUS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62712/juribmas.v5i1.1160

Abstract

Kelompok Tani Mekar Jaya Satu di Desa Sidorejo telah memanfaatkan greenhouse untuk meningkatkan efisiensi budidaya tanaman dan mendukung ketahanan pangan. Namun, pengelolaannya masih menghadapi kendala berupa suhu greenhouse yang tidak terkontrol dan human error pada proses penyiraman yang menyebabkan hasil panen belum optimal. Program pengabdian ini bertujuan mengimplementasikan smart greenhouse berbasis Internet of Things (IoT) untuk mendukung digitalisasi pengelolaan greenhouse. Kegiatan dilaksanakan melalui survei kebutuhan, pengembangan sistem, pengujian, dan pelatihan mitra. Sistem yang dikembangkan menggunakan ESP32, sensor suhu dan kelembapan udara DHT22, sensor kelembapan tanah, serta metode fuzzy logic untuk pengendalian exhaust fan. Hasil pengujian menunjukkan nilai eror sebesar 0,31°C untuk suhu udara, 3,71%RH untuk kelembapan udara, dan 2,41% untuk kelembapan tanah. Sistem fuzzy logic bekerja dengan tingkat keberhasilan 100%, sedangkan pemahaman peserta meningkat dari 0–73% menjadi 87–100% setelah pelatihan. Hasil ini menunjukkan bahwa sistem berhasil mendukung pengelolaan greenhouse yang lebih efektif dan meningkatkan kapasitas mitra dalam pemanfaatan teknologi pertanian modern.