MODIFIKASI MESIN PENCACAH SAMPAH PADA TIVA DENGAN INOVASI KONTROL KECEPATAN MOTOR LISTRIK DAN MONITORING DAYA BERBASIS ARDUINO

Authors

  • Berlly Fachriza Politeknik Manufaktur Negeri Bangka Belitung
  • Inzaggy Fadhlillah Politeknik Manufaktur Negeri Bangka Belitung
  • Andi Muhammad Aqil Politeknik Manufaktur Negeri Bangka Belitung
  • Herwandi Herwandi Politeknik Manufaktur Negeri Bangka Belitung
  • Surojo Surojo Politeknik Manufaktur Negeri Bangka Belitung

Keywords:

waste shredding machine, Arduino, speed control, power monitoring, energy efficiency

Abstract

The management of organic waste in the campus environment, particularly at the Teaching Industry (TIVA) of the Agricultural Study Program at Politeknik Manufaktur Negeri Bangka Belitung (Polman Babel), requires effective and efficient solutions. The existing waste shredding machine still has limitations, especially in terms of motor speed control and electrical power consumption monitoring. Therefore, this study aims to modify the waste shredding machine by implementing an electric motor speed control system and power monitoring based on Arduino.The methods used include system design using an Arduino microcontroller, sensor integration for power monitoring, and performance testing before and after modification. The motor speed control system is designed to adjust rotation according to the type and load of the waste being processed, while the power monitoring system provides real-time energy consumption data. The results show that the modification improves the machine’s performance, making it more efficient and flexible. The motor speed control produces more optimal shredding results, while power monitoring helps manage electrical energy usage. Thus, this innovation is expected to support better and more sustainable waste management on campus.

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References

Banzi, M. & Shiloh, M., 2022. Getting Started with Arduino. California: Maker Media.

Bose, B.K., 2021. Modern Power Electronics and AC Drives. New Jersey: Prentice Hall.

Damanhuri, E. & Padmi, T., 2018. Pengelolaan Sampah Terpadu. Bandung: ITB Press.

Frequency Drive in Industrial Applications. International Journal of Electrical Engineering, 15(3), pp.112–120.

Ibrahim, D., 2021. Arduino Based Industrial Control Systems. United Kingdom: Wiley.

Kumar, P., Singh, R. & Sharma, V., 2023. Energy Efficiency Improvement Using Variable

Purnomo, H., Nugroho, A. & Wibowo, D., 2023. Real-Time Electrical Power Monitoring System Based on Arduino. Journal of Engineering and Technology,

Rahman, M., Islam, S. & Hossain, M., 2024. IoT-Based Energy Monitoring for Industrial Equipment Using ESP32. Sensors, 24(5), pp.1–15.

Saputra, R., Firmansyah, A. & Prasetyo, B., 2024. Pengembangan Mesin Pencacah Sampah Organik dengan Sistem Kendali Kecepatan Motor Listrik. Jurnal Teknologi Pertanian Indonesia, 29(1), pp.55–64.

Siregar, M.A., 2022. Analisis Kinerja Mesin Pencacah Sampah Organik untuk Produksi Kompos. Jurnal Rekayasa Pertanian, 10(2), pp.45–52.

Tchobanoglous, G. & Kreith, F., 2021. Handbook of Solid Waste Management. New York: McGraw-Hill.

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Published

21-08-2026

How to Cite

Fachriza, B., Fadhlillah, I., Aqil, A. M. ., Herwandi, H., & Surojo, S. (2026). MODIFIKASI MESIN PENCACAH SAMPAH PADA TIVA DENGAN INOVASI KONTROL KECEPATAN MOTOR LISTRIK DAN MONITORING DAYA BERBASIS ARDUINO. Prosiding Seminar Nasional Inovasi Teknologi Terapan, 6(1), 241–247. Retrieved from https://snitt.polman-babel.ac.id/index.php/snitt/article/view/855

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