Automation of Conveyor System Based on Internet of Things (IoT) with Remote Control via Telegram Bot and ESP32

Authors

  • Selamat Meliala Universitas Malikussaleh
  • Yogi Satya Universitas Malikussaleh
  • Rosdiana Rosdiana Universitas Malikussaleh
  • Taufiq Taufiq Universitas Malikussaleh
  • Yasir Amani Universitas Malikussaleh

DOI:

https://doi.org/10.29103/jreece.v6i1.20447

Keywords:

IoT, ESP32, Telegram Bot, Conveyor Automation, Industry 4.0

Abstract

This study presents the design and implementation of an IoT-based automated conveyor system using the ESP32 microcontroller and Telegram bot for remote control. The system integrates the L298N motor driver to precisely control the speed and direction of a 12V DC motor. Telegram serves as the communication platform, enabling real-time notifications, remote monitoring, and operational control, thereby enhancing user convenience and operational flexibility. The experimental results demonstrate the system's stability across various operating conditions. Testing revealed consistent performance in controlling motor speed and direction without overheating or disruptions, even during extended operations. The system effectively integrates IoT and automation technologies to provide a scalable, cost-effective solution for modern industrial conveyor systems. This research contributes to the advancement of Industry 4.0 by addressing the growing demand for efficient, remote-controlled automation. The proposed system offers significant potential for application in industrial settings, emphasizing reliability, ease of use, and adaptability. Future enhancements could focus on incorporating additional sensors and advanced analytics to improve system intelligence and extend functionality.

References

[1] Aytaç Yıldız, “International Journal of Pioneering Technology Use of Artificial Intelligence in Smart Production in the Industrial 4 . 0 Era,” no. 01, pp. 24–27, 2022.

[2] S. Nugrowibowo and M. Muslimin, “Smart Manufacturing: Latest Technologies And Applications In Industrial Engineering,” J. Minfo Polgan, vol. 12, no. 1, pp. 305–310, 2023, doi: 10.33395/jmp.v12i1.12374.

[3] D. J. Oktaviani, S. Widiyastuti, D. A. Maharani, A. N. Amalia, A. M. Ishak, and A. Zuhrotun, “pengaplikasian internet of things (iot) dalam manufaktur industri farmasi di era industri 4.0 Agung,” Farmaka, vol. 18, no. 1, pp. 1–15, 2020.

[4] A. Rospawan, J. W. Simatupang, and I. Purnama, “IOT Application For Conveyor Motor Load Current And Temperature Monitoring Device for Factory Acceptance Test in Industrial Application,” J. ELTIKOM, vol. 6, no. 2, pp. 152–162, 2022, doi: 10.31961/eltikom.v6i2.553.

[5] B. Plc, D. Monitoring, and S. Dan, “Pengembangan konveyor pemisah logam berbasis plc dengan monitoring scada dan iot,” 2024.

[6] P. V. S. Anusha, P. Swapna, and D. V. R. K. Reddy, “Revolutionizing Conveyor Belt Systems: Empowering Predictive Maintenance with IoT, Cloud, and Machine Learning,” SSRG Int. J. Electr. Electron. Eng., vol. 11, no. 6, pp. 224–233, 2024, doi: 10.14445/23488379/IJEEE-V11I6P124.

[7] D. A. N. Kontrol, K. Air, and M. Esp, “Telegram untuk monitoring dan kontrol kualitas air menggunakan esp32,” vol. 9, no. 3, pp. 1292–1306, 2024.

[8] H. Wanandi, “skripsi system monitoring dan speed control pada motor prototype belt conveyor berbasis internet of things (IoT),” 2023.

[9] I. Made, S. Adhi Wardana, P. Alit, W. Santiary, and I. (2022) Made Budiada, “Rancang Bangun Sistem Sortir dan Monitoring Paket Menggunakan QR Code Berbasis Internet of Things (IoT),” pp. 1–8, 2022, [Online]. Available: https://repository.pnb.ac.id

[10] R. Syawali and S. Meliala, “IoT-Based Three-Phase Induction Motor Monitoring System,”JREECE, pp. 12–18, 2023.

[11] F. Risha, S. Wulan Dari, and T. Adi Tama Nasution, “Prototype Smart Packet Box Cash On Delivery Menggunakan ESP-32 Cam,” Maj. Iptek Politek. Negeri Medan Polimedia, vol. 26, no. 03, pp. 1–10, 2023.

[12] L. I. Cornelisz, E. K. Allo, and Y. O. Wuwung, “Rancangan Bangun Alat Pengantar Makanan Menggunakan Conveyor Berbasis IoT,” CCIT J., vol. 10, no. 2, pp. 269–279, 2017.

[13] A. Rombekila and B. L. Entamoing, “Prototype Sistem Smart Sistem Smart Home Berbasis IoT dengan Handphone Android Menggunakan NODEMCU ESP32,” J. Tek. AMATA, vol. 3, no. 1, pp. 32–37, 2022, doi: 10.55334/jtam.v3i1.275.

[14] P. T. PENS, “Modul 1 Pengenalan ESP32 Board,” MK Internet Things, vol. 6, pp. 1–16, 2019.

[15] S. M. Jalil, F. Abdurrahman, S. Meliala, and Rosdiana, “Design of maximum power point tracking for solar collector drying system: An experimental study,” Int. J. Power Electron. Drive Syst., vol. 9, no. 4, pp. 1799–1803, 2018, doi: 10.11591/ijpeds.v9.i4.pp1799-1803.

[16] R. S., Z. Shakked, and D. M. Crothers, “Sistem otomasi box conveyor untuk proses pengemasan pada robotic pouch case packer,” Nucleic Acids Research, vol. 6, no. 1, pp. 1–7, 2018. [Online]. Available: http://dx.doi.org/10.1016/j.gde.2016.09.008

[17] F. Husain et al., “Perancangan Model Otomasi pada Industri Furnitur di Jepara Studi Kasus Produk Wood Cap,” vol. 9503, pp. 175–184, 2024.

[18] I. R. Muttaqin and D. B. Santoso, “Prototype Pagar Otomatis Berbasis Arduino Uno Dengan Sensor Ultrasonic Hc-SR04,” JE-Unisla, vol. 6, no. 2, p. 41, 2021, doi: 10.30736/je-unisla.v6i2.695.

[19] S. Widodo, S. P. Sutisna, and R. Waluyo, “Rancang Bangun Sistem Gerak Dan Penghindar Halangan Robot Pembersih Lantai,” J. ALMIKANIKA, vol. 3, no. 3, pp. 94–102, 2021.

[20] S. Meliala, S. Muhammad Jalil, W. Fuadi, and A. Asran, “Application of Off-Grid Solar Panels System for Household Electricity Consumptions in Facing Electric Energy Crisis,”IJESTY., vol. 2, no. 1, pp. 30–37, 2021, doi: 10.52088/ijesty.v2i1.199.

[21] H. Randa and S. Meliala, “Perancangan Sistem Charging Control Photovoltaic Dengan Sistem Mppt Menggunakan Metode Incremental Conductance,” J. Energi Elektr., vol. 11, no. 1, p. 6, 2022, doi: 10.29103/jee.v11i1.7724.

[22] S. Meliala, J. T. Elektro, U. M. Lhokseumawe, and P. Surya, “Implementasi on Grid Inverter Pada Instalasi,” vol. 17, no. 2, pp. 47–56, 2020.

[23] M. Dermawan and S. Meliala, “Design Traffic Light of HCSR04 Sensor Fuzzy Logic Method Based on Arduino Mega 2560,”IJESTY, vol. 2, no. 4, pp. 133–143, 2022, [Online]. Available: https://doi.org/10.52088/ijesty.v1i4.386

[24] F. R. Maulana, M. Daud, and S. Meliala, “Analisis Kemunculan Harmonisa pada Variable Frequency Drive dan Dampaknya terhadap Pengaturan Kecepatan Motor Induksi Tiga Fase,” vol. 18, no. 03, 2024.

[25] S. Meliala, R. Putri, S. Saifuddin, and M. Sadli, “Perancangan Penggunan Panel Surya Kapasitas 200 WP On Grid System pada Rumah Tangga di Pedesaan,” J. Electr. Technol., vol. 5, no. 3, pp. 100–111, 2020, [Online]. Available: https://jurnal.uisu.ac.id/index.php/jet/article/view/3544

[26] T. P. Naidu, P. Sundaraiah, M. V. Narayana, and G. Immadi, “Telegram Bot Guide For Home Appliances,” Int. J. Aquat. Sci., vol. 12, no. 2, pp. 2299–2306, 2021.

[27] M. Abdul muthalib, I. Irfan, K. Kartika, and S. M. Selamat Meliala, “Pengiraan Pose Model Manusia Pada Repetisi Kebugaran Ai Pemograman Python Berbasis Komputerisasi,” INFOTECH J., vol. 9, no. 1, pp. 11–19, 2023, doi: 10.31949/infotech.v9i1.4233.

[28] M. Meriadi, Selamat Meliala and Jurusan, “Perencanaan dan Pembuatan Alat Pengering Biji Coklat Dengan Wadah Putar Menggunakan Pemanas Listrik, ,” pp. 47–53, 2018.

[29] T. Hariono and A. Chanifuddin, “Monitoring Automation System Design Hydroponics Based on Chatbot,” Newt. Netw. Inf. Technol., vol. 1, no. 2, pp. 88–93, 2021, doi: 10.32764/newton.v1i2.1616.

[30] S. Meliala and A. Asri, “Sosialisasi Penggunaan Teknologi Smartroom dan IOT pada Balai Desa Keude Krueng Geukeuh, Solma,” vol. 13, no. 3, pp. 2271–2278, 2024.

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Published

31-03-2026

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