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Research Articles

Case Study: Rigorous Boresight Alignment of a Marine Mobile LiDAR System Addressing the Specific Demands of Port Infrastructure Monitoring

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Pages 295-327 | Received 31 Jul 2021, Accepted 28 Dec 2021, Published online: 11 Jan 2022

References

  • Ackermann, F. 1999. Airborne laser scanning - present status and future expectations. ISPRS Journal of Photogrammetry and Remote Sensing 54 (2–3):64–7.
  • Ahmad Fuad, N., A. R. Yusoff, Z. Ismail, and Z. Majid. 2018. Comparing the performance of point cloud registration methods for landslide monitoring using mobile laser scanning data. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences 42 (4/W9):11–21.
  • Alho, P., A. Kukko, H. Hyyppä, H. Kaartinen, J. Hyyppä, and A. Jaakkola. 2009. Application of boat-based laser scanning for river survey. Earth Surface Processes and Landforms 34 (13):1831–628.
  • Böder, V., T. P. Kerstenl, T. Thies, and A. Sauer. 2011. Mobile laser scanning on board hydrographic survey vessels - Applications and accuracy investigations. Hydrography in Practice 4927 (May):18–22. http://www.fig.net/pub/fig2011/papers/ts05j/ts05j_boeder_kersten_et_al_4927.pdf.
  • Böse, J. W. 2011. Handbook of terminal planning. Operations research/computer science interfaces series. Vol. 49. New York: Springer.
  • Brunner, F. K. 2007. On the methodology of engineering geodesy. Journal of Applied Geodesy 1 (2): 57–62.
  • Crombaghs, M. J. E., R. Brugelmann, and E. J. de Min. 2000. On the adjustment of overlapping strips of laser altimeter height data. International Archives of Photogrammetry and Remote Sensing 33 (B3/1):230–7.
  • De Gijt, J. G. 2010. A history of quay walls techniques, types, costs and future.
  • Dix, M., A. Abd-Elrahman, B. Dewitt, and L. Nash. 2012. Accuracy evaluation of terrestrial LIDAR and multibeam sonar systems mounted on a survey vessel. Journal of Surveying Engineering 138 (4):203–13.
  • Filin, S. 2003. Recovery of systematic biases in laser altimetry data using natural surfaces. Photogrammetric Engineering & Remote Sensing 69 (11):1235–42.
  • Firoozi, A. A., M. R. Taha, S. M. Mir Moammad Hosseini, and A. A. Firoozi. 2014. Examination of the behavior of gravity quay wall against liquefaction under the effect of wall width and soil improvement. TheScientificWorldJournal 2014 (July):325759. Hindawi Publishing Corporation.
  • Fischler, M. A., and R. C. Bolles. 1981. Random sample consensus: A paradigm for model fitting with applications to image analysis and automated cartography. Communications of the ACM 24 (6):381–95.
  • Girardeau-Montaut, D. 2021. Cloud compare. 3D point cloud and mesh processing software-open source project. http://www.cloudcompare.org/.
  • Glennie, C. 2012. Calibration and kinematic analysis of the velodyne HDL-64E S2 lidar sensor. Photogrammetric Engineering & Remote Sensing 78 (4):339–47.
  • Hartmann, J., I. Von Gösseln, N. Schild, A. Dorndorf, J. A. Paffenholz, and I. Neumann. 2019. Optimisation of the calibration process of a k-tls based multi-sensor-system by genetic algorithms. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences 42 (2/W13):1655–62..
  • Hebel, M., and U. Stilla. 2012. Simultaneous calibration of ALS systems and alignment of multiview LiDAR scans of urban areas. IEEE Transactions on Geoscience and Remote Sensing 50 (6):2364–79.
  • Heinz, E., C. Eling, M. Wieland, L. Klingbeil, and H. Kuhlmann. 2017. Analysis of different reference plane setups for the calibration of a mobile laser scanning system. In Lienhart, W. (Ed.), Ingenieurvermessung 17, Beiträge zum 18, 131-146. Graz, Austria: Internationalen Ingenieurvermessungskurs.
  • Heinz, E., C. Holst, H. Kuhlmann, and L. Klingbeil. 2020. Design and evaluation of a permanently installed plane-based calibration field for mobile laser scanning systems. Remote Sensing 12 (3):555.
  • IxBlue Hydrins. 2017. Advanced Post-Processing Software.
  • Kager, H. 2004. Discrepancies between overlapping laser scanner strips–simultaneous fitting of aerial laser scanner strips. International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences 35 (B1):555–60.
  • Kalyan, T. S., P. A. Zadeh, S. Staub-French, and T. M. Froese. 2016. Construction quality assessment using 3D as-built models generated with Project Tango. Procedia Engineering 145:1416–23.
  • Karamperidou, A. 2008. Parametric analysis of quay walls with relieving platform, by means of elastic supported beam and finite element method [M.Sc. Thesis]. TU Delft.
  • Kersting, A. 2011. Quality assurance of multi-sensor systems [Ph.D. diss.]. Calgary, AB, Canada: Department of Geomatics Engineering, University of Calgary.
  • Kishi, N., A. Asada, K. Abukawa, and K. Fujisawa. 2015. Inspection methods for underwater structures of ports and harbors. In 2015 IEEE Underwater Technology, UT 2015. IEEE.
  • Li, D., H. Guo, C. Wang, P. Dong, and Z. Zuo. 2016. Improved bore-sight calibration for airborne light detection and ranging using planar patches. Journal of Applied Remote Sensing 10 (2):024001.
  • Lu, X., C. Feng, Y. Ma, F. Yang, B. Shi, and D. Su. 2019. Calibration method of rotation and displacement systematic errors for ship-borne mobile surveying systems. Survey Review 51 (364):78–86.
  • Maas, H. G. 2002. Methods for measuring height and planimetry discrepancies in airborne laserscanner data. Photogrammetric Engineering and Remote Sensing 68 (9):933–40.
  • Moisan, E., P. Charbonnier, P. Foucher, P. Grussenmeyer, S. Guillemin, and M. Koehl. 2015. Adjustment of sonar and laser acquisition data for building the 3D reference model of a canal tunnel. Sensors (Basel, Switzerland) 15 (12):31180–204.
  • Ravi, R., T. Shamseldin, M. Elbahnasawy, Y. J. Lin, and A. Habib. 2018. Bias impact analysis and calibration of UAV-based mobile LiDAR system with spinning multi-beam laser scanner. Applied Sciences 8 (2):297.
  • Rondeau, M., and F. Pelletier. 2013. Using integrated technology to inspect quay walls. In Port Technology International, 1–2.
  • Ruggeri, P., V. M. E. Fruzzetti, and G. Scarpelli. 2021. Upgrading of quay walls at the Ravenna Port, Italy: Evaluation of the steel piles degradation after a long working life. Structure and Infrastructure Engineering 17 (2):249–59.
  • Rusu, R. B., S. Cousins, and W. Garage. 2011. 3D is here: Point Cloud Library (PCL). In IEEE International Conference on Robotics and Automation (ICRA).
  • Shahraji, M. H., C. Larouche, and M. Cocard. 2020. Analysis of systematic errors of mobile LiDAR systems: A simulation approach. ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences 1 (2020):253–60.
  • Shi, B., X. Lu, F. Yang, C. Zhang, Y. Lv, and M. Cheng. 2017. Shipborne over- and under-water integrated mobile mapping system and its seamless integration of point clouds. Marine Geodesy 40 (2–3):104–22.
  • Skaloud, J., and D. Lichti. 2006. Rigorous approach to bore-sight self-calibration in airborne laser scanning. ISPRS Journal of Photogrammetry and Remote Sensing 61 (1):47–59.
  • Thies, T. 2011. A vessel-based mobile mapping system – from sensor integration to multipurpose products. PhD thesis. HafenCity University Hamburg. http://www.riegl.com/uploads/tx_pxpriegldownloads/Thies_Thomas__2011_-_A_Vessel-Based_Mobile_Mapping_System__Master_Thesis__HafenCity_University_Hamburg__Germany_part1.pdf.
  • Vosselman, G., and S. Filin. 2004. Adjustment of airborne laser altimetry strips. In Proceedings of the ISPRS XXth Congress XXXV, 285.
  • Wehr, A., and U. Lohr. 1999. Airborne laser scanning - an introduction and overview. ISPRS Journal of Photogrammetry and Remote Sensing 54 (2–3):68–82.

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