For more details on the methodology and the IGMS service, please contact Slaven Kalenjuk.
Kalenjuk, S., Lienhart, W. (2022) A Method for Efficient Quality Control and Enhancement of Mobile Laser Scanning Data. Remote Sens. 2022, 14(4), 857. DOI
Kalenjuk S, Lienhart W (2023) Drive-by infrastructure monitoring: a workflow for rigorous deformation analysis of mobile laser scanning data. Structural Health Monitoring. DOI
Kalenjuk, S., Lienhart, W., & Rebhan, M. (2021) Processing of mobile laser scanning data for large‐scale deformation monitoring of anchored retaining structures along highways. Computer-aided civil and infrastructure engineering, 2021(36), 1-17. DOI
Kalenjuk S, Lienhart W, Rebhan MJ, Marte R (2019) Large-scale monitoring of retaining structures: new approaches on the safety assessment of retaining structures using mobile mapping, Proceedings Volume 10970, Sensors and Smart Structures Technologies for Civil, Mechanical, and Aerospace Systems 2019; 109700T (2019): doi
Lienhart W., Kalenjuk S. (2017) Combined Laser Scanning and Image Based Monitoring of Large Infrastructure Objects. IWSHM 2017, September 12th-14th, 2017, Stanford, California, USA: 3147-3154. Reprint
Lienhart W., Kalenjuk S., Ehrhart C. (2017): Efficient and Large Scale Monitoring of Retaining Walls along Highways using a Mobile Mapping System. Proc. 8th Int. Conf. on Structural Health Monitoring of Intelligent Infrastructure – SHMII-8, Brisbane, Australia: RS3-11, 8 p. PDF
Kalenjuk S., Lienhart W., Rebhan M., Marte R. (2018) Neue Ansätze zur Zustandsbewertung bestehender Stützbauwerke basierend auf 3D-Modellen aus dynamischem Laserscanning, Proc. Messen in der Geotechnik 2018. Stahlmann, J. (Hrsg.). Braunschweig: Institut für Grundbau und Bodenmechanik, TU Braunschweig, Band 104: S. 15 - 36 Reprint