Early Warning System Prototype Model on Microcontroller Based Curved Line Maintenance

Authors

  • Mariana Puspitasari Politeknik Perkeretaapian Indonesia Madiun

DOI:

https://doi.org/10.37367/jpi.v6i1.170

Keywords:

microcontroller, proximity, curved path, train early warning system

Abstract

The operation of railway infrastructure is regulated in the Government Regulation of the Republic of Indonesia Number 56 of 2009 concerning the Operation of Railways. In order to maintain the reliability of railway infrastructure or facilities, maintenance is necessary. At the time of maintenance of infrastructure on the curved line, the workers received very little information about the trains that would pass through the track being repaired. So a new system is needed to give warnings for passing trains. The new system is prototyped using a proximity sensor-based microcontroller. Information is obtained when the proximity sensor detects the presence of objects in front of it by emitting infrared rays. The proximity sensor is set to detect something less than 80 cm away as input and issue warning information. This prototype is made in 2 modes for single and double lanes, and can be turned off in 1 lane only. Alerts are on a curved path helping workers get information more effectively and efficiently. Thus reducing the risk of accidents. Because when the arch is closed, you can't see the direction of the train's arrival. However, with this system, workers get information in real time.

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References

Pemerintah Republik Indonesia, “Peraturan Pemerintah Republik Indonesia Nomor 56 Tahun 2009 Tentang Penyelenggaraan Perkeretaapian.,” Jakarta, 2009.

Vendy Yhulia Susanto Noverius Laoli, “Pemerintah telah bangun 1.025 kilometer jalur kereta dalam lima tahun terakhirNo Title,” kontan.co.id, 2020. https://nasional.kontan.co.id/news/pemerintah-telah-bangun-1025-kilometer-jalur-kereta-dalam-lima-tahun-terakhir (accessed May 09, 2022).

A. A. N. Lubis, A. P. Iswanto, W. Riyanta, and W. A. Wirawan, “Pengaruh Pemahaman Early Warning System Sebagai Variabel Intervening,” pp. 23–24, 2020.

T. Arifianto, B. R. Antoro, and S. Triwijaya, “Peningkatan Tingkat Akurasi Pembacaan Rail Detector Berbasis Inductive Proximity Dengan Penambahan Fungsi Reversible Counter,” pp. 2476–2483, 2020.

M. Subali, “Palang Pintu Kereta Otomatis dengan Indikator Suara Sebagai Peringatan Dini Berbasis Mikrokontroler AT89S51,” Teknol. Rekayasa, vol. 13, no. 1, pp. 1–8, 2008.

M. F. Ramadhan, “OUTPUT AUDIO PADA SPEAKER TERKONEKSI WIRELESS MENGGUNAKAN ANDROID BERBASIS MIKROKONTROLER,” Tek. KOMPUTER, Politek. NEGERI Sriwij. PALEMBANG, no. August, 2016.

M. S. Hadi, “Mengenal Mikrokontroler AVR Atmega16,” Ilmu Komputer, Malang, 2008.

N. S. Widodo, Buku Ajar Sistem Berbasis Mikroprosesor. UAD PRESS, 2021.

H. A. Dharmawan, Mikrokontroler: Konsep Dasar dan Praktis. Universitas Brawijaya Press, 2017.

Y. Djawad, “MIKROKONTROLER DAN INTERACE,” 2017.

I. Setiawan, “Buku Ajar Sensor dan Transduser,” 2009.

M. H. Masruri and J. Creativity, Buku Pintar Android. Elex Media Komputindo, 2015.

N. L. Husni, S. Rasyad, M. S. Putra, Y. Hasan, and J. Al Rasyid, “Pengaplikasian Sensor Warna pada Navigasi Line Tracking Robot Sampah berbasis Mikrokontroler,” J. Ampere, vol. 4, no. 2, pp. 297–306, 2020.

J. Jufriyanto, M. Zulkarnain, I. Irvawansyah, and S. Mustafa, “Rancang Bangun Media Pembelajaran Penyortiran Benda Berbasis Mikrokontroler,” Joule (Journal Electr. Eng., vol. 1, no. 1, pp. 32–40, 2020.

H.-K. Lee, S.-I. Chang, and E. Yoon, “Dual-mode capacitive proximity sensor for robot application: Implementation of tactile and proximity sensing capability on a single polymer platform using shared electrodes,” IEEE Sens. J., vol. 9, no. 12, pp. 1748–1755, 2009.

S. Fericean, A. Dorneich, R. Droxler, and D. Krater, “Development of a microwave proximity sensor for industrial applications,” IEEE Sens. J., vol. 9, no. 7, pp. 870–876, 2009.

A. Sifa, T. Hendrawan, E. Haris, and F. Fitriani, “Rancang Bangun Trainer Elektro Pneumatik Low Cost Berbasis Micocontroller (Arduino) untuk Sekolah Menengah Kejuruan (SMK),” Pros. Ind. Res. Work. Natl. Semin., vol. 12, pp. 320–323, 2021.

A. Amarudin, D. A. Saputra, and R. Rubiyah, “Rancang Bangun Alat Pemberi Pakan Ikan Menggunakan Mikrokontroler,” J. Ilm. Mhs. Kendali Dan List., vol. 1, no. 1, pp. 7–13, 2020.

I. P. L. Dharma, S. Tansa, and I. Z. Nasibu, “Perancangan Alat Pengendali Pintu Air Sawah Otomatis dengan SIM800l Berbasis Mikrokontroler Arduino Uno,” J. Tek., vol. 17, no. 1, pp. 40–56, 2019.

Published

2022-07-12

How to Cite

Puspitasari, M. (2022). Early Warning System Prototype Model on Microcontroller Based Curved Line Maintenance. Jurnal Perkeretaapian Indonesia (Indonesian Railway Journal), 6(1), 45–52. https://doi.org/10.37367/jpi.v6i1.170

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