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V. Cera; M. Campi (2017)
Publisher: Copernicus Publications
Journal: The International Archives of the Photogrammetry
Languages: English
Types: Article
Subjects: TA1-2040, T, TA1501-1820, Applied optics. Photonics, Engineering (General). Civil engineering (General), Technology
The paper presents a phase of an on-going interdisciplinary research concerning the medieval site of Casertavecchia (Italy). The project aims to develop a multi-technique approach for the semantic - enriched 3D modeling starting from the automatic acquisition of several data.

In particular, the paper reports the results of the first stage about the Cathedral square of the medieval village. The work is focused on evaluating the potential of an imaging rover for automatic point cloud generation. Each of survey techniques has its own advantages and disadvantages so the ideal approach is an integrated methodology in order to maximize single instrument performance.

The experimentation was conducted on the Cathedral square of the ancient site of Casertavecchia, in Campania, Italy.
  • The results below are discovered through our pilot algorithms. Let us know how we are doing!

    • Argan, G.C., 1993. L'architettura protocristiana, preromanica e romanica.
    • B√§umker, M., Przybilla, H.-J., 2011. Investigations on the accuracy of the navigation data of unmanned Aerial Vehicles using the example of the system mikrokopter. In: Int. Arch. of Photogrammetry, Remote Sensing and Spatial Information Sciences, 38(1/C22).
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    • Brenningmeyer, T., Kourelis, K., Katsaros, M., 2015. The Lidoriki Project: Low Altitude, Aerial Photography, GIS, and Traditional Survey in Rural Greece. In: Proc. of the 43rd Annual Conference on Computer Applications and Quantitative Methods in Archaeology, 1, pp. 979-988.
    • Brunn, A., Meyer, Th., 2016. Calibration of a multi-camera rover. In: Int. Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XLI-B5, pp. 445-452.
    • Park, J-K., Um, D-Y., 2015. Accuracy Analysis of Structure Modeling using Continuous Panoramic Image. In: International Journal of Smart Home, 9(5), PP. 165-174.
    • Remondino, F., 2011. Heritage Recording and 3D Modelling with Photogrammetry and Laser Scanning. In: Remote Sensing, 3(6), pp.1104-1138.
    • Saleri, R., Cappellini, V., Nony, N., Pierrot-Deseilligny, M., Bardiere, E., De Luca, L., Campi, M., 2013. UAV Photogrammetry for archaeological survey: The Theaters area of Pompeii. In: Addison, A. C., De Luca, L., Guidi, G., Pescarin, S., Digital Heritage, Institute of Electrical and Electronics Engineers (IEEE), II, pp. 497-502.
    • Santano, D., Esmaeili, H., 2014. Aerial Videography in Built Heritage Documentation: The Case of Post-Independence Architecture of Malaysia. In: International Conference on Virtual System & Multimedia VSMM, Hong Kong.
    • Skarlatos, D., Kiparissi, S., 2012. Comparison of laser scanning, photogrammetry and SFM-MVS pipeline applied in structures and artificial surfaces. In: Int. Annals of Photogrammetry, Remote Sensing and Spatial Information Sciences, I-3, pp. 299-304.
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