Compressor Monitoring System Using Esp32 and Google Sheet At PT. AFS
Sistem Monitoring Kompresor Menggunakan Esp32 dan Google Sheet di PT. AFS
DOI:
https://doi.org/10.21070/ups.8426Keywords:
Google Sheets, Compressor, PZEM-004T, PT AFSAbstract
The compressor monitoring system is a solution to improve operational efficiency and reliability at PT AFS. This study aims to design and implement an ESP32-based system to monitor compressor performance parameters in real-time. This system uses several sensors, namely a pressure transmitter to measure pressure, a PZEM-004T module to monitor electricity consumption, and a MAX6675 module with a K-type thermocouple to monitor temperature. Data from the sensors is collected and processed by the ESP32, which is then sent via a Wi-Fi network to be displayed on the user interface platform. This system allows continuous monitoring of operational conditions, assisting in early detection of potential problems, such as overpressure, excessive power consumption, or overheating. With this system, PT AFS can reduce the risk of downtime, improve energy efficiency, and extend the life of compressor components. Implementation shows that the system is able to provide accurate and relevant data.
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References
SevenLight.ID, “Andalan Fluid Sistem.” 2022. [Online]. Available: https://www.andalanfluids.com/
M. S. Hidayat, D. S. A. Pambudi, and A. T. Nugraha, “Sistem Monitoring Air Compressor pada Sistem Pendistribusian Udara Berbasis IoT,” Elektriese J. Sains dan Teknol. Elektro, vol. 12, no. 02, pp. 126–140, 2022, doi: 10.47709/elektriese.v12i02.1944.
I. G. A. Darmawan, L. Jasa, and P. Rahardjo, “LANCAR Rancang Bangun Alat Sebagai Layanan Notifikasi Air conditioner Yang Rusak Pada Bagian Kompresor,” Maj. Ilm. Teknol. Elektro, vol. 19, no. 2, p. 211, 2020, doi: 10.24843/mite.2020.v19i02.p13.
A. Wisaksono, Y. Purwanti, N. Ariyanti, and M. Masruchin, “Design of Monitoring and Control of Energy Use in Multi-storey Buildings based on IoT,” JEEE-U (Journal Electr. Electron. Eng., vol. 4, no. 2, pp. 128–135, 2020, doi: 10.21070/jeeeu.v4i2.539.
A. S. R. Murty, M. Satyanarayana, and I. Devi Vara Prasad, “Compressor health monitoring using IOT,” Int. J. Mech. Prod. Eng. Res. Dev., vol. 8, no. 3, pp. 117–124, 2018, doi: 10.24247/ijmperdjun201813.
I. Sulistiyowati and M. I. Muhyiddin, “Disinfectant Spraying Robot to Prevent the Transmission of the Covid-19 Virus Based on the Internet of Things (IoT),” J. Electr. Technol. UMY, vol. 5, no. 2, pp. 61–67, 2021, doi: 10.18196/jet.v5i2.12363.
W. D. Prabowo, A. S. Wibowo, and M. A. Murti, “Sistem Perawatan Dan Pemecahan Masalah Pada Kompressor Udara Menggunakan Metode Reliability Centered Maintenance Berbasis Iot,” eProceedings Eng., vol. 7, no. 1, pp. 287–293, 2020.
S. Syahrorini and D. Hadidjaja, “Aplikasi Alat Ukur Partikulat Dan Suhu Berbasis Iot,” Dinamik, vol. 25, no. 1, pp. 1–9, 2020, doi: 10.35315/dinamik.v25i1.7512.
R. Nasrullah and F. Muliawati, “Sistem Monitoring Kelembaban Udara Otomatis Berbasis Iot Pada Tekanan Kompresor”.
P. Wardhana, D. M. K, and H. Prastiyawan, “Penerapan Sistem Monitoring Waktu Pemakaian Kompresor Torak 2 , 2 kW di EVE Workshop PT Solusi Bangun Indonesia Pabrik Cilacap,” pp. 1142–1149, 2021.
Riefky Iqbal Mahendra, “Perancangan Prototipe Alat Monitoring Sistem Pengkondisi Udara Berbasis IoT ( Internet Of things ),” 2021.
I. Anshory, D. Hadidjaja, and I. Sulistiyowati, “Implementation of Automatic Handwashing Waist for Covid-19 Prevention,” Jambura J. Heal. Sci. Res., vol. 3, no. 2, pp. 154–161, 2021, doi: 10.35971/jjhsr.v3i2.9798.
V. N. Kostyukov and A. P. Naumenko, “About the Experience in Operation of Reciprocating Compressors under Control of the Vibration Monitoring System,” Procedia Eng., vol. 152, pp. 497–504, 2016, doi: 10.1016/j.proeng.2016.07.635.
S. D. Ayuni, S. Syahrorini, and J. Jamaaluddin, “Lapindo Embankment Security Monitoring System Based on IoT,” Elinvo (Electronics, Informatics, Vocat. Educ., vol. 6, no. 1, pp. 40–48, 2021, doi: 10.21831/elinvo.v6i1.40429.
B. Fredo Zakaria, M. Ary Murti, A. Surya Wibowo, and T. Elektro, “Sistem Pemantauan Kompresor Udara Berbasis Internet of Things Monitoring System Air Compressor Based on Internet of Things,” e-Proceeding Eng., vol. 7, no. 1, pp. 272–280, 2020.
I. N. Majid, T. Elektronika, G. Tunggal, M. Ridwan, and A. Cahyono, “Rancang Bangun Sistem Pemantauan Parameter Untuk Mendiagnosa Kondisi Mesin Kompresor Sentrifugal Berbasis Web,” vol. 4, no. 1, pp. 2808–5027, 2022.
E. S. Ma’arif and S. Yudihastoro, “Monitoring Kinerja Motor Kompresor Angin dengan Komunikasi Modbus Menggunakan Outseal PLC,” Resist. (Elektronika Kendali Telekomun. Tenaga List. Komputer), vol. 6, no. 1, p. 11, 2023, doi: 10.24853/resistor.6.1.11-16.
J. Jamaaluddin, “Sistem Kontrol Pendingin Mobil Ramah Lingkungan Berbasis Android,” Cyclotron, vol. 2, no. 1, 2019, doi: 10.30651/cl.v2i1.2528.
A. Ahfas, M. B. Ulum, D. H. R. Saputra, and S. Syahrorini, “Automatic Spray Desinfectant Chicken with Android Based on Arduino Uno,” IOP Conf. Ser. Earth Environ. Sci., vol. 519, no. 1, 2020, doi: 10.1088/1755-1315/519/1/012013.
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