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Analysis of Incidence Angle and Distance Effects on Terrestrial Laser Scanner Intensity: Search for Correction Methods.

, , , , and . Remote Sensing, 3 (10): 2207-2221 (2011)

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The Use of a Mobile Laser Scanning System for Mapping Large Forest Plots., , , , , and . IEEE Geosci. Remote. Sens. Lett., 11 (9): 1504-1508 (2014)Precise carrier phase-based point positioning of boat-mounted terrestrial remote sensing platform., , , and . ICL-GNSS, page 1-6. IEEE, (2014)Nationwide Point Cloud - The Future Topographic Core Data., , , , , , and . ISPRS Int. J. Geo Inf., 6 (8): 243 (2017)Experiences of mobile mapping in environmental monitoring., , , , and . UPINLBS, page 1-6. IEEE, (2010)Multisource Point Clouds, Point Simplification and Surface Reconstruction., , , , , , and . Remote. Sens., 11 (22): 2659 (2019)Analysis of Incidence Angle and Distance Effects on Terrestrial Laser Scanner Intensity: Search for Correction Methods., , , , and . Remote Sensing, 3 (10): 2207-2221 (2011)Dense Road Surface Grip Map Prediction from Multimodal Image Data., , , , , , , and . CoRR, (2024)Multiplatform Mobile Laser Scanning: Usability and Performance., , , and . Sensors, 12 (9): 11712-11733 (2012)Evaluating Factors Impacting Fallen Tree Detection from Airborne Laser Scanning Point Clouds., , , , , , , and . Remote. Sens., 15 (2): 382 (January 2023)Comparison of Backpack, Handheld, Under-Canopy UAV, and Above-Canopy UAV Laser Scanning for Field Reference Data Collection in Boreal Forests., , , , , , and . Remote. Sens., 12 (20): 3327 (2020)