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Evaluation of open-source libraries and commercial software utilised for dense point cloud generation: a case study of cultural heritage objects Cover

Evaluation of open-source libraries and commercial software utilised for dense point cloud generation: a case study of cultural heritage objects

Open Access
|Apr 2026

Abstract

The development of image-based approaches for 3D dense reconstruction has found wide application in the architectural documentation of cultural objects and sites. For this reason, it is crucial to understand the potential and limitations of Multi-View Stereo (MVS) algorithms used in 3D shape reconstruction. This article aims to evaluate the quality and accuracy of dense point generation for cultural heritage objects using open-source (MicMac, OpenMVS, RealityScan), commercial algorithms (Agisoft Metashape and Pix4D), and an Unmanned Aerial Vehicle (UAV) in parallel and skew configurations at two historic wooden structures. To achieve this, a workflow for data evaluation was proposed, incorporating eigenvalues and quality factors, such as planarity, roughness, normal vector variance, and cloud-to-TLS (Terrestrial Laser Scanning) cloud deviation analysis. The results demonstrate that the image-acquisition geometry strongly influences reconstruction accuracy. Parallel configurations consistently produced higher completeness, narrower deviation distributions, and improved geometric fidelity compared to skew configurations. Among commercial solutions, Agisoft Metashape and Pix4D achieved the best overall performance. Open-source algorithms yielded variable results: OpenMVS-SGM achieved competitive accuracy under optimal conditions, while the OpenMVS-Patch-Based Approach offered a balance between density and roughness.

DOI: https://doi.org/10.2478/rgg-2026-0001 | Journal eISSN: 2391-8152 | Journal ISSN: 0867-3179
Language: English
Page range: 1 - 18
Submitted on: Nov 15, 2025
Accepted on: Mar 20, 2026
Published on: Apr 21, 2026
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2026 Anna Michałek, Jakub Markiewicz, Justyna Wójcik-Leń, Adam Kostrzewa, Michał Kowalczyk, Sławomir Łapiński, Adrian Macek, published by Warsaw University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.