Rancang Bangun Sistem Monitoring Kompresor Udara Di Area Utility Berbasis IOT
Keywords:
IoT, Kompresor Udara, Monitoring, Mikrokontroler, UtilityAbstract
This research aims to design and develop an Internet of Things (IoT)-based monitoring system for air compressors in the utility area, in order to enhance efficiency and enable real-time monitoring. The system utilizes a Pressure Transmitter sensor ( 0 – 12 bar ) to measure air pressure and a PZEM-004T sensor to measure the voltage and current of the compressor. The collected data is transmitted via a microcontroller to the Blynk application and displayed on a web-based dashboard. The research employs a system design method, which includes planning, hardware and software implementation, and testing. System evaluation is conducted using span error calculations to ensure the accuracy of the displayed data. The results show that the system successfully monitors air pressure, voltage, and current in real time with an acceptable level of accuracy. The data can be accessed online through the dashboard, allowing users to remotely monitor the compressor's performance effectively.
References
Afrizal, D., & Kunang, S. O. (n.d.). Rancang Bangun Sistem Kendali Pneumatic Pump Dalam Proses Kalibrasi Bina Darma Conference on Engineering Science. 121–132.
Fauzi, I. A., & Dini, H. S. (2022). Koordinasi Rele Jarak Sebagai Pengaman Utama Dengan Rele Arus Lebih Pada Saluran Udara Tegangan Tinggi 150 kV Balongbendo - 150 kV Sekarputih. 11(1), 40–52.
Handini, I. T., & Darvina, Y. (2020). Rancang Bangun Sistem Pengukuran Tekanan Udara Menggunakan DT-Sense Barometric Pressure Berbasis Internet of Things dengan Tampilan pada Smartphone menggunakan DT-Sense Barometric Presssure berbasis Internet of Things dengan DT Sense Barometric Pressure a. 08(01), 1–10.
Hasibuan, A., Isa, M., Yusoff, M. I., Rafidah, S., & Rahim, A. (2020). Analisa Aliran Daya Pada Sistem Tenaga Listrik Dengan Metode Fast Decoupled Menggunakan Software Etap. 3(1).
Innayah, N. S. (2017). Rancang Bangun Sistem Monitoring Hasil Uji Tekanan Pada Press Machine Beton Berbasis Mikrokontroler Atmega32. 1–51. http://repository.its.ac.id/45272/1/2414031009-Undergraduate_Thesis.pdf
Kurnia Pratama, A., Zondra, E., & Yuvendius, H. (2020). Analisis Efisiensi Motor Induksi Tiga Phasa Akibat Perubahan Tegangan. Jurnal Sain, Energi, Teknologi & Industri), 5(1), 35–43.
Penelitian, S. N., Peslinof, M., Afrianto, M. F., Fendriani, Y., Hutabarat, B. F., Kusmalinda, A., Fisika, P. S., Jambi, U., Studi, P., Informasi, S., & Jambi, U. (2022). Pengujian Aplikasi Internet Of Things (IoT ) Pada Sistem Pemantauan Parameter Fisis Air Dengan Basis Data. 182–186.
Permana, D. S. (2021). Analisis Kinerja Sistim Kompresor Udara di Jalur Produksi PT.X Melalui Audit Energi. Jurnal Teknik Mesin, 10(2), 91. https://doi.org/10.22441/jtm.v10i2.11893












