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https://doi.org/10.5552/crojfe.2026.4532

Path Explorer – an AI-Driven Corridor Planning System for Forest Road Routing: A Case Study in Bosnia and Herzegovina

Vladimir Petković ; University of Banja Luka Faculty of Forestry Bulevar Petra Bojovića 1a 78000 Banja Luka BOSNIA AND HERZEGOVINA *
Goran Ćetković orcid id orcid.org/0009-0002-4693-2121 ; Public Forest Company »Šume Republike Srpske« Ltd. Romanijska 1 71350 Sokolac BOSNIA AND HERZEGOVINA
Dane Marčeta orcid id orcid.org/0000-0001-5464-6753 ; University of Banja Luka Faculty of Forestry Bulevar Petra Bojovića 1a 78000 Banja Luka BOSNIA AND HERZEGOVINA
Darko Ljubojević ; Public Forest Company »Šume Republike Srpske« Ltd. Vožda Karađorđa 4/2 79101 Prijedor BOSNIA AND HERZEGOVINA
Milan Sukur ; University of Banja Luka Faculty of Forestry Bulevar Petra Bojovića 1a 78000 Banja Luka BOSNIA AND HERZEGOVINA

* Dopisni autor.


Puni tekst: engleski pdf 2.450 Kb

str. 381-394

preuzimanja: 0

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Sažetak

Forest road planning is a key component of sustainable forest management, as it ensures access to harvesting, transport, and protection activities while minimizing environmental impacts. Recent advances in digital terrain models (DTMs) and automated design tools have opened new possibilities for improving the efficiency of road alignment planning. This study evaluates the potential of an AI-driven corridor planning system (Path Explorer) integrated into RoadEng software compared with the traditional zero-line method in designing the forest road »Osmača–Compartment 56« in Bosnia and Herzegovina. Two DTMs with resolutions of 20×20 m and 90×90 m were used to generate alternative alignments, which were then refined in the Location module to produce preliminary projects and compared with the operational (field-designed) alignment. The results indicate that AI-driven preliminary designs achieved shorter alignments and lower estimated construction costs and earthwork volumes, suggesting potential cost savings under the tested conditions. The operational design, based on field measurements, remained the most accurate and suitable for final implementation in complex terrain. The study emphasizes that these conclusions are limited to the tested DTM resolutions and the specific case study area. Nevertheless, the integration of AI-driven corridor planning systems into early design phases can enhance the efficiency and objectivity of forest road planning, supporting more informed and sustainable engineering decisions.

Ključne riječi

AI-driven corridor, digital terrain model (DTM), forest road design, RoadEng

Hrčak ID:

348300

URI

https://hrcak.srce.hr/348300

Datum izdavanja:

17.7.2026.

Posjeta: 0 *