研究目的
The aim of such systems is a geometry- and surface-based analysis in an industrial environment with an accuracy of +/? 1–2 mm or better.
研究成果
The paper concludes that both static and kinematic TLS, when combined with multi-sensor-systems, can achieve high-precision 3D object capturing in industrial environments with accuracies in the range of +/? 1–2 mm. The study demonstrates the transferability of laboratory-based quality assessment methods to real industrial conditions and highlights the potential of kinematic TLS for efficient data acquisition in large-scale applications.
研究不足
The study acknowledges limitations related to the influence of measurement geometry, distance, and angle of incidence on TLS measurements. Additionally, the accuracy of kinematic TLS is affected by system calibration, synchronization, and geo-referencing of the mobile platform. The paper suggests that future work should address these limitations by improving the measurement setup and data analysis methods.