Analisis Perbandingan Volume Stockpile Batubara Menggunakan Data Foto Udara Unmanned Aerial Vehicle (UAV) Mavic 3 Pro dengan Hasil Truck Count di PT. Mitra Barito

Authors

  • Albertus Niko Liswanto Universitas Palangkaraya
  • Hepriyandi L. Djanas Usup Universitas Palangkaraya
  • Ferdinandus Ferdinandus Universitas Palangkaraya
  • Wiryanto Wiryanto Universitas Palangkaraya
  • Asri Fridtriyanda Universitas Palangkaraya

DOI:

https://doi.org/10.55606/jurritek.v5i2.9186

Keywords:

Coal Stockpile, Photogrammetry, Truck Count, UAV, Volume

Abstract

This study aims to analyze a comparison of coal stockpile volumes using the DJI Mavic 3 Pro Unmanned Aerial Vehicle (UAV) method versus the truck count method at PT. Mitra Barito. Data collection was conducted through aerial photography using a UAV at altitudes of 60 meters and 70 meters, as well as Ground Control Point (GCP) measurements using GPS. The aerial imagery data was processed using photogrammetry software to generate orthophotos and a Digital Elevation Model (DEM), followed by a geometric accuracy test based on the Geospatial Information Agency Regulation No. 6 of 2018, using the Circular Error 90% (CE90) and Linear Error 90% (LE90) parameters. The research results show that high-quality processing at an altitude of 60 meters yields a CE90 value of 2.1619 meters and an LE90 value of 4.3656 meters, thereby meeting the accuracy standards for RBI maps at a scale of 1:5,000, Class 3 for horizontal accuracy, and a scale of 1:10,000, Class 3 for vertical accuracy. Volume calculations of the stockpile using UAVs yielded a result of 22,750.900 m³, while the truck count method produced a volume of 23,503.300 m³. The volume difference between the two methods was 753.400 m³, with a deviation percentage of 3.2%. Based on the research results, the UAV method is considered capable of providing relatively accurate calculations of coal stockpile volume.

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References

Apriyadi, M. R., Syahrudin, & Purwoko, B. (2017). Kajian teknis manajemen penimbunan batubara di ROM stockpile PT Ganda Alam Makmur Kecamatan Kaubun dan Karangan Kabupaten Kutai Timur Kalimantan Timur. Program Studi Teknik Pertambangan, Fakultas Teknik, Universitas Tanjungpura.

Arfaini, J., & Handayani, H. H. (2016). Analisa foto udara untuk DEM dengan metode TIN, IDW, dan kriging. Jurnal Teknik ITS, 5(2). https://doi.org/10.12962/j23373539.v5i2.17382

Auningsih, S. W. N., Rohmaeni, D., Megasukma, Y., & Zahar, W. (2021). Pemodelan stockpile menggunakan metode fotogrametri dengan wahana UAV (Unmanned Aerial Vehicle) di PT Triaryani. Jurnal Geomine, 9(2), 141–149. https://doi.org/10.33536/jg.v9i2.958

Badan Informasi Geospasial. (2014). Peraturan Kepala Badan Informasi Geospasial Nomor 15 Tahun 2014 tentang pedoman teknis ketelitian peta dasar. Badan Informasi Geospasial.

Badan Informasi Geospasial. (2018). Peraturan Badan Informasi Geospasial Republik Indonesia Nomor 6 Tahun 2018 tentang perubahan atas Peraturan Kepala Badan Informasi Geospasial Nomor 15 Tahun 2014 tentang pedoman teknis ketelitian peta dasar. Badan Informasi Geospasial.

Hadi, S., & Rizani, A. (2023). Perbandingan volume overburden berdasarkan hasil pengukuran metode cut and fill dengan metode truck count. Jurnal Poros Teknik, 15(1), 1–8. https://doi.org/10.31961/porosteknik.v15i1.1647

Halimi, K. (2018). Pemodelan dan perhitungan volume stockpile dengan wahana UAV (Unmanned Aerial Vehicle) pada wilayah penambangan PT Lhoong Setia Mining (Skripsi, Universitas Syiah Kuala).

Kementerian Energi dan Sumber Daya Mineral. (2023). Keputusan Direktur Jenderal Mineral dan Batubara Nomor 17.K/HK.02/DJB.S/2023 tentang petunjuk teknis pemetaan dan evaluasi kemajuan tambang mineral dan batubara dengan menggunakan teknologi Unmanned Aerial Vehicle (UAV). Kementerian Energi dan Sumber Daya Mineral.

Khoirriyah, L. (2025). Evaluasi ketelitian perhitungan volume stockpile batubara menggunakan foto udara unmanned aerial vehicle berdasarkan tinggi terbang dan jumlah ground control point (Proyek Akhir, Universitas Gadjah Mada). https://doi.org/10.22146/jgst.v4i2.23893

Kristianie, Y. (2023). Perhitungan volume timbunan batubara menggunakan unmanned aerial vehicle (UAV) Mavic Air 2 di PT Mitra Barito Lumbung Energi Site PT Kalimantan Prima Nusantara (KPN) (Skripsi, Universitas Palangka Raya).

Pribadi, K. K. (2016). Pengukuran dan pemetaan ground control point (GCP) dalam misi pemotretan udara di area pembangkit listrik tenaga air Ketenger Kabupaten Banyumas. Universitas Pendidikan Indonesia.

Soendjojo, H., & Riqqi, A. (2012). Kartografi. Institut Teknologi Bandung.

Tao, C. V. (2002). Principles and applications of photogrammetry. Photogrammetric Engineering and Remote Sensing, 68(1), 7–10.

Wolf, P. R., & Dewitt, B. A. (2000). Elements of photogrammetry with applications in GIS (3rd ed.). McGraw-Hill.

Nurhidayatullah Am, Shalaho Dina Devy, Lucia Litha Respati, Ardhan Ismail, Tommy Trides, & Agus Winarno. (2025). Pengaruh curah hujan terhadap produksi alat angkut batubara PT Bima Nusa Internasional Pit Susubang Jobsite PT Kideco Jaya Agung Kecamatan Muara Komam Kabupaten Paser Provinsi Kalimantan Timur. Globe: Publikasi Ilmu Teknik, Teknologi Kebumian, Ilmu Perkapalan, 3(3), 14–35. https://doi.org/10.61132/globe.v3i3.936

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Published

2026-06-03

How to Cite

Albertus Niko Liswanto, Hepriyandi L. Djanas Usup, Ferdinandus Ferdinandus, Wiryanto Wiryanto, & Asri Fridtriyanda. (2026). Analisis Perbandingan Volume Stockpile Batubara Menggunakan Data Foto Udara Unmanned Aerial Vehicle (UAV) Mavic 3 Pro dengan Hasil Truck Count di PT. Mitra Barito. JURNAL RISET RUMPUN ILMU TEKNIK, 5(2), 439–445. https://doi.org/10.55606/jurritek.v5i2.9186

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