Prototype Development of a Real-Time Monitoring System Based on Android and Cloud Database for Textile Non-Thermal Plasma Treatment
DOI:
https://doi.org/10.52435/jaiit.v7i2.686Keywords:
Plasma, Textile, Monitoring, Sensor, PrototypeAbstract
The textile modification process using plasma treatment requires accurate monitoring of gas species generated during operation; however, no system is currently available to measure these gas concentrations in real time. To address this gap, this study develops a plasma gas monitoring system for textile material modification, using experimental data obtained from laboratory tests conducted in 2024. The research employs a practical prototyping approach consisting of four stages: requirement identification, system design, prototype construction, and performance validation. The system is designed to continuously record plasma-generated gas concentrations and store the data in an internet-based database. The prototype consists of two main components: (1) a sensing unit built on an Arduino Uno microcontroller integrated with DHT-11 and MQ-131 sensors for measuring temperature, humidity, and ozone concentration, and (2) a data management platform using Google Spreadsheet connected to a mobile application to enable real-time monitoring and control. Evaluation results show that the monitoring tool achieved a Mean Absolute Error (MAE) of 0.6625 ppm, indicating that the system provides reasonably accurate measurements for initial validation. As this assessment is preliminary, future studies should employ a larger dataset to increase statistical robustness and further verify system performance. Overall, the findings contribute to the development of an accessible, Android-based plasma treatment monitoring system capable of supporting real-time monitoring in textile material modification applications.
References
S. Dehghan, S. Sattarpanah Karganroudi, S. Echchakoui, and N. Barka, “The Integration of Additive Manufacturing into Industry 4.0 and Industry 5.0: A Bibliometric Analysis (Trends, Opportunities, and Challenges),” Jan. 01, 2025, Multidisciplinary Digital Publishing Institute (MDPI). doi: 10.3390/machines13010062.
M. Ghobakhloo, M. Iranmanesh, M. Fathi, A. Rejeb, B. Foroughi, and D. Nikbin, “Beyond Industry 4.0: a systematic review of Industry 5.0 technologies and implications for social, environmental and economic sustainability,” Asia-Pacific Journal of Business Administration, 2024, doi: 10.1108/APJBA-08-2023-0384.
M. Z. Yaqub and A. Alsabban, “Industry-4.0-Enabled Digital Transformation: Prospects, Instruments, Challenges, and Implications for Business Strategies,” Sustainability (Switzerland), vol. 15, no. 11, Jun. 2023, doi: 10.3390/su15118553.
A. M. Alwakeel, “Synergistic Integration of Edge Computing and 6G Networks for Real-Time IoT Applications,” Mathematics, vol. 13, no. 9, p. 1540, May 2025, doi: 10.3390/math13091540.
A. Suryadi, A. Romansyah, A. Suhendi, and D. Saputra Wijaya, “Pemanfaatan Mikrokontroler Arduino Sebagai Sistem KendalI Otomatis Smart Home Utilization Of Arduino Microcontroller As A Smart Home Automatic Control System,” TENSILE: Jurnal Pengabdian Kepada Masyarakat, vol. 1, no. 2, 2023.
C. Yohana Windra, “Penerapan Mikrokontroller Arduino Mega 2560 sebagai Monitoring pada Pembacaan Arus 3 Phasa di Gardu Induk 150 kV Lubuk Alung,” Jurnal Teknik Elektro Institut Teknologi Padang, vol. 10, no. 1, p. 2021, 2021, doi: 10.21063/JTE.2021.31331007.
S. Hartati and A. Nugroho, “Sistem Pendukung Keputusan Berbasis Ahp (Analytical Hierarchy Process) Untuk Penentuan Kesesuaian Penggunaan Lahan (Studi Kasus: Kabupaten Semarang),” 2012.
D. S. M. Machado, D. Moreira, H. Castro, and A. Barão, “Real-Time Logistic Monitoring: System Prototype Overview,” Journal of Information Systems Engineering and Management, vol. 6, no. 2, 2021, doi: 10.29333/jisem/9671.
R. Trisdiyanti, F. Renaldi, F. Rakhmat Umbara, and A. Talib Bon, “Implementation of Production Monitoring Systems in A Small Textile Company,” in International Conference on Industrial Engineering and Operations Management, A. T. Bon, Ed., Michigan: IEOM Society International, 2020.
A. P. Sitepu, F. Renaldi, and H. Ashaury, “Computer-Based Multi-Layered Monitoring Systems on Textile Manufacturing Processes,” in Journal of Physics: Conference Series, IOP Publishing Ltd, Mar. 2021. doi: 10.1088/1742-6596/1845/1/012023.
V. G. V. Putra, J. N. Mohamad, and Y. Yusuf, “Penerapan Gelombang Plasma dalam Mengurangi Kadar Chemical Oxygen Demand (COD) pada Limbah Batik Melalui Corona Plasma dan Elektrokoagulasi dengan Metode Variasi,” Jurnal Ilmu Fisika | Universitas Andalas, vol. 12, no. 2, pp. 60–69, Sep. 2020, doi: 10.25077/jif.12.2.60-69.2020.
W. Murti, V. Galih, and V. Putra, “Studi Pengaruh Perlakuan Plasma Terhadap Sifat Material Antibakteri Kain Kassa Menggunakan Minyak Atsiri (Zingiber Officinale Rosc),” 2020.
T. Kusumah, T. Wahyudi, and M. Widodo, “Phase Change Material Dari Campuran Parafin Untuk Tekstil Swa-Termoregulasi Phase Change Material From Binary Mix Paraffins For Self-Thermoregulating Textiles,” Texere, vol. 18, no. 2, 2020.
J. Nurgraha and M. Widodo, “Pencangkokan N-Isopropilakrilamida Pada Nirtenun Lyocell Dengan Bantuan Iradiasi Plasma Lucutan Korona Bertekanan Atmosfir Grafting Of N-Isopropylaclimaride On Lyocell Nonwoven With The Assistance Of Atmospheric Corona Discharge Plasma Irradiation,” Arena Tekstil, vol. 37, no. 1, 2022.
D. Primadi, M. Widodo, and N. Noerati, “Pencangkokan Poli (N-Isopropilakrilamida) Pada Jaring Raschel Polietilena Menggunakan Plasma Lucutan Korona Bertekanan Atmosfir,” Texere, vol. 19, no. 1, pp. 46–61, Jun. 2021, doi: 10.53298/texere.v19i1.05.
K. Kusumandari, T. E. Saraswati, and S. Saputri, “Lucutan Plasma Pijar Korona dengan Variasi Tegangan untuk Degradasi Metilen Biru,” Indonesian Journal of Applied Physics, vol. 9, no. 1, pp. 2089–0133, 2019.
A. Pamungkas, I. N. Anggraini, M. Khairul, A. Rosa, and A. Herawati, “Aplikasi Lucutan Plasma Corona Dalam Pengolahan Limbah Cair Kelapa Sawit,” Jurnal Amplifer, vol. 10, no. 2, 2020.
F. Abdullah, V. Galih, and V. Putra, “Plasma Non-Thermal Sebagai Pensteril Masker untuk Inaktivasi Virus Corona (COVID-19),” 2022.
E. W. Fridayanthie, H. Haryanto, and T. Tsabitah, “Penerapan Metode Prototype Pada Perancangan Sistem Informasi Penggajian Karyawan (Persis Gawan) Berbasis Web,” Paradigma - Jurnal Komputer dan Informatika, vol. 23, no. 2, Sep. 2021, doi: 10.31294/p.v23i2.10998.
D. Purnomo, “Model Prototyping Pada Pengembangan Sistem Informasi,” JIMP-Jurnal Informatika Merdeka Pasuruan, vol. 2, no. 2, 2017.
A. Sulistiyono, H. Hartanto, F. Fathuroyan, D. Saputra, and I. B. Arifin, “Studi Profil Ozone Permukaan (O3) Dan Gas Monoksida (CO) Antara Kota Bandung Dan Bukit Kototabang,” Jurnal Ilmu Lingkungan, vol. 17, no. 2, p. 239, Sep. 2019, doi: 10.14710/jil.17.2.239-244.
I. Nabillah and I. Ranggadara, “Mean Absolute Percentage Error untuk Evaluasi Hasil Prediksi Komoditas Laut,” JOINS (Journal of Information System), vol. 5, no. 2, pp. 250–255, Nov. 2020, doi: 10.33633/joins.v5i2.3900.
F. Abdullah, N. Rahmawati, and V. G. V. Putra, “Penerapan Algorithma Genetika Pada Masalah Penugasan Maklon di Industri Garmen dan Apparel,” Jurnal Sains dan Informatika, vol. 9, no. 1, pp. 15–23, Apr. 2023, doi: 10.22216/jsi.v9i1.1522.
S. H. Putri, F. Abdullah, N. Rahmawati, C. C. Dayani, and A. Kusumadewi, “A Novel Mathematical Model for Quality Optimization of Textile Products During Shipment ARTICLE INFORMATION ABSTRACT,” Jurnal INTECH Teknik Industri Universitas Serang Raya, vol. 10, no. 199, pp. 89–96, 2024, doi: 10.30656/intech.v9i2.8695.
F. Abdullah, S. Iskandar, F. Achmad, A. Kusumadewi, T. Martina, and Kusnawarti, “Data analytics-based model for optimizing cationic retarder and acetic acid in polyacrylic yarn dyeing,” Material Science, Engineering and Applications, Jun. 2025, doi: 10.21595/msea.2025.24811.
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