Rapid Photogrammetry with a 360-Degree Camera for Tunnel Mapping

Author:

Janiszewski MateuszORCID,Torkan MasoudORCID,Uotinen LauriORCID,Rinne Mikael

Abstract

Structure-from-Motion Multi-View Stereo (SfM-MVS) photogrammetry is a viable method to digitize underground spaces for inspection, documentation, or remote mapping. However, the conventional image acquisition process can be laborious and time-consuming. Previous studies confirmed that the acquisition time can be reduced when using a 360-degree camera to capture the images. This paper demonstrates a method for rapid photogrammetric reconstruction of tunnels using a 360-degree camera. The method is demonstrated in a field test executed in a tunnel section of the Underground Research Laboratory of Aalto University in Espoo, Finland. A 10 m-long tunnel section with exposed rock was photographed using the 360-degree camera from 27 locations and a 3D model was reconstructed using SfM-MVS photogrammetry. The resulting model was then compared with a reference laser scan and a more conventional digital single-lens reflex (DSLR) camera-based model. Image acquisition with a 360-degree camera was 3× faster than with a conventional DSLR camera and the workflow was easier and less prone to errors. The 360-degree camera-based model achieved a 0.0046 m distance accuracy error compared to the reference laser scan. In addition, the orientation of discontinuities was measured remotely from the 3D model and the digitally obtained values matched the manual compass measurements of the sub-vertical fracture sets, with an average error of 2–5°.

Funder

Academy of Finland

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference35 articles.

1. Tunnel inspection using photogrammetric techniques and image processing: A review;Attard;ISPRS J. Photogramm. Remote Sens.,2018

2. Hudson, J., and Harrison, J. Engineering Rock Mechanics: An Introduction to the Principles, 2000.

3. Structure from Motion photogrammetry to characterize underground rock masses: Experiences from two real tunnels;García-Luna;Tunn. Undergr. Space Technol.,2019

4. Photogrammetry for recording rock surface geometry and fracture characterization;da Fontoura;Proceedings of the Earth and Geosciences, the 14th International Congress on Rock Mechanics and Rock Engineering (ISRM 2019),2019

5. A new approach for semi-automatic rock mass joints recognition from 3D point clouds;Riquelme;Comput. Geosci.,2014

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