PERANCANGAN DAN PEMBUATAN TEMPAT SAMPAH OTOMATIS BERBASIS SENSOR ULTRASONIK DI DLH KOTA YOGYAKARTA

Authors

  • Fatur Putra Ramadhan Universitas Teknologi Yogyakarta
  • Tri Novia Colling Universitas Teknologi Yogyakarta
  • Andung Jati Nugroho Universitas Teknologi Yogyakarta

DOI:

https://doi.org/10.61722/jirs.v3i1.8686

Keywords:

tempat sampah otomatis, sensor ultrasonik, mikrokontroler, sistem buka-tutup, Dinas Lingkungan Hidup Kota Yogyakarta.

Abstract

The amount of waste in urban areas, especially in Yogyakarta City, is growing, which shows the need for better and cleaner waste management.

Traditional trash bins need people to touch them directly, which can make them less clean and uncomfortable to use. This study focuses on creating an automatic trash bin that opens and closes without touching, using an ultrasonic sensor. This system is being developed for the Yogyakarta City Environmental Agency (DLH). The system uses an ultrasonic sensor to sense when something is near, a microcontroller to control everything, and a servo motor to open and close the bin automatically. The research process includes reading previous studies, designing the system, building a prototype, and testing how well it works. The test results show that the system can accurately detect objects within a certain distance and operate the opening and closing function smoothly and quickly. Using this automatic trash bin can help make public spaces cleaner, more comfortable for users, and support the development of technology-based waste management solutions in Yogyakarta City.

References

Amrah, Z., Gusmira, E., Sukmawati, N., Raudhatul Islamiyah, Mt., Jabung Barat Jambi, T., dan Teknologi, S., & Sulthan Thaha Saifuddin Jambi, U. (2021). Rancang Bangun Tempat Sampah Otomatis Berbasis Arduino Uno Design And Build Automatic Waste Tool Based On Arduino Uno. SSJ: Sains Dan Sains Terapan Journal, I, 38–48.

Ayu Damayanti, R., Trimurti Negari, L., Jihad Purnama, S., Septarini, S., & Saiful, M. (2024). Rancang Bangun Tempat Sampah Otomatis Berbasis Arduino Uno dengan Sensor Ultrasonik. Jurnal PRINTER: Jurnal Pengembangan Rekayasa Informatika Dan Komputer, 2(2), 150–160. https://doi.org/10.29408/jprinter.v2i2.28864

Kristanti, N., Samsugi, S., Surahman, A., Pratama, R. F., & Adam, R. I. (2023). Penerapan Sensor Ultrasonik Pada Kotak Sampah Otomatis Menggunakan Telegram Dan Alarm Suara. Jurnal Teknik Dan Sistem Komputer, 3(2), 67–78. https://doi.org/10.33365/jtikom.v3i2.2347

Marsharani, Rofiah, S., & Retnoningsih, E. (2025). Rancang Bangun Tempat Sampah Otomatis Menggunakan Sensor HC-SR04 Berbasis Arduino Uno. Journal of Students‘ Research in Computer Science, 6(1), 125–134. https://doi.org/10.31599/z94b2304

Philipus, T., & Sembiring, A. S. (2024). Pengembangan Tempat Sampah Pintar Berbasis Arduino Uno untuk Optimalisasi Pengelolaan Sampah. Jurnal Kolaborasi Sains Dan Ilmu Terapan, 2, 46–54. https://utilityprojectsolution.org/ejournal/index.php/JuKSIT

Pratama, A. W., & Harijono, A. (2024). Analisis Sensor Ultrasonik pada Teknologi tempat Sampah Pintar Berbasis Mikrokontroler Arduino Nano. Journal of Mechanical Engineering, 3, 1–9.

R. Kurniawan, N. Rubiati, S. Y. Z. (2021). TUTUP TEMPAT SAMPAH OTOMATIS MENGGUNAKAN SENSOR ULTRASONIK BERBASIS MIKROKONTROLER

ARDUINO. Jurnal Informatika, Manajemen Dan Komputer, 13(2), 1–7.

Ramadhan, B. A., Rizianiza, I., & Manta, F. (2022). Rancang Bangun Tempat Sampah Pemilah Otomatis Berbasis Arduino. Jurnal Rekayasa Mesin, 17(2), 265. https://doi.org/10.32497/jrm.v17i2.3283

Sanjaya, H., Daulay, N. K., Trianto, J., & Andri, R. (2022). Tempat Sampah Otomatis Berbasis Mikrokontroler Arduino. JURIKOM (Jurnal Riset Komputer), 9(2), 451. https://doi.org/10.30865/jurikom.v9i2.4058

Yustina Yesisanita Yeyen. (2023). Pengembangan Tempat Sampah Otomatis Menggunakan Sensor Ultrasonik Hcsr04 Di Lingkungan Fakultas Keguruan Dan Ilmu Pendidikan Universitas Nusa Nipa. Jurnal Review Pendidikan Dan Pengajaran,6(3),1155–1160. https://journal.universitaspahlawan.ac.id/index.php/jrpp/article/view/25743/23339

Downloads

Published

2026-01-25

Issue

Section

Articles