PRODUCT ACCURACY EFFECT of OBLIQUE and VERTICAL NON-METRIC DIGITAL CAMERA UTILIZATION in UAV-PHOTOGRAMMETRY to DETERMINE FAULT PLANE

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Abstract

This study aims to see the effect of non-metric oblique and vertical camera combination along with the configuration of the ground control points to improve the precision and accuracy in UAV-Photogrammetry project. The field observation method is used for data acquisition with aerial photographs and ground control points. All data are processed by digital photogrammetric process with some scenarios in camera combination and ground control point configuration. The model indicates that the value of precision and accuracy increases with the combination of oblique and vertical camera at all control point configuration. The best products of the UAV-Photogrammetry model are produced in the form of Digital Elevation Model (DEM) compared to the LiDAR DEM. Furthermore, DEM from UAV-Photogrammetry and LiDAR are used to define the fault plane by using cross-section on the model and interpretation to determine the point at the extreme height of terrain changes. The result of the defined fault planes indicate that two models do not show any significant difference.

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Amrullah, C., Suwardhi, D., & Meilano, I. (2016). PRODUCT ACCURACY EFFECT of OBLIQUE and VERTICAL NON-METRIC DIGITAL CAMERA UTILIZATION in UAV-PHOTOGRAMMETRY to DETERMINE FAULT PLANE. In ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences (Vol. 3, pp. 41–48). Copernicus GmbH. https://doi.org/10.5194/isprs-annals-III-6-41-2016

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