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July 21, 2025Remote SensingOpen Access

A Comprehensive Review of Mathematical Error Characterization and Mitigation Strategies in Terrestrial Laser Scanning

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Authors

MSMansoor SabzaliLPLloyd Pilgrim

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Overview

This review highlights strategies for addressing measurement uncertainty in terrestrial laser scanning, suggesting improvements in scanner calibration and data accuracy.

Key Points

  • The study identifies four main sources of error affecting terrestrial laser scanning accuracy.
  • These errors relate to instrumental imperfections, atmospheric conditions, scanning geometry, and object characteristics.
  • Current calibration methods mainly address short-range scanning, leaving long-range techniques underexplored.
  • The findings suggest new user-oriented calibration tests to improve data reliability for various applications.

Cite This Study

Sabzali et al. (2025) studied this question.

synapsesocial.com/papers/689a060ee6551bb0af8cd2fdhttps://doi.org/10.3390/rs17142528
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Also Consider

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  1. 1Complementing and Validating Uncertainty of Terrestrial Laser Scanning via Interval Analysis2026
  2. 2Experimental and analytical geodetic accuracy assessment of terrestrial laser scanning for deformation monitoring under static and dynamic conditions2026
  3. 34D Pointwise Terrestrial Laser Scanning Calibration: Radiometric Calibration of Point Clouds2025
  4. 4Calibration of Panoramic Terrestrial Laser Scanners using Planar Patches2026
  5. 5On-site strategy for estimating range variances of terrestrial laser scanners based on (un-)scaled intensity values2026