Yihui Yang

Yihui Yang
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Yihui verified their affiliation via an institutional email.
Verified
Yihui verified their affiliation via an institutional email.
  • Doctor of Engineering
  • PostDoc Position at Technical University of Munich

About

9
Publications
1,538
Reads
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26
Citations
Current institution
Technical University of Munich
Current position
  • PostDoc Position
Additional affiliations
Technical University of Munich
Position
  • Postdoctoral researcher

Publications

Publications (9)
Conference Paper
Full-text available
Permanent laser scanning technology has been utilized for continuous monitoring of natural hazards over the past decade, owing to its ability to capture high spatio-temporal resolution point cloud time series, termed 4D point clouds (3D space + time). These 4D point clouds from PLS enable the detection of intricate surface changes and deeper insigh...
Article
Full-text available
Multi-temporal acquisitions of 3D point clouds for geomonitoring tasks allow the quantification and analysis of geometric changes of monitored objects by advanced processing algorithms, further revealing the underlying deformation mechanism. Among numerous approaches proposed in the geoscientific domain for point cloud-based deformation analysis, m...
Article
Accurate and robust 3D point cloud registration is the crucial part of the processing chain in terrestrial laser scanning (TLS)-based deformation monitoring that has been widely investigated in the last two decades. For the scenarios without signalized targets, however, automatic and robust point cloud registration becomes more challenging, especia...
Article
Full-text available
Accepting the ecological necessity of a drastic reduction of resource consumption and greenhouse gas emissions in the building industry, the Institute for Lightweight Structures and Conceptual Design (ILEK) at the University of Stuttgart is developing graded concrete components with integrated concrete hollow spheres. These components weigh a fract...
Conference Paper
Full-text available
The fast improvement of laser scanning technology has pushed terrestrial laser scanning (TLS) to the forefront of geodetic deformation analysis. As TLS becomes more integrated into this field, it is critical to construct a stochastic model that appropriately describes the uncertainty in TLS measurements. This includes creating a valid and fully pop...
Conference Paper
Full-text available
Das Forschungsprojekt AImon5.0 fokussiert sich auf die Echtzeitüberwachung gravitativer Massenbewegungen am Trierer Augenscheiner, einer geologisch komplexen Felsformation mit hoher Instabilität. Im Rahmen des Projekts wurde ein permanentes Monitoring-System auf Basis eines Laserscanners installiert, der kontinuierlich 4D-Daten zur Erfassung von Fe...
Conference Paper
Full-text available
The permanent terrestrial laser scanning (PLS) system has opened the possibilities for efficient data acquisition with high-temporal and spatial resolution, thus allowing for improved capture and analyses of complex geomorphological changes on the Earth's surface. Accurate georeferencing of generated four-dimensional point clouds (4DPC) from PLS is...
Thesis
Full-text available
The geometric changes in the real world can be captured by measuring and comparing the 3D coordinates of object surfaces. Traditional point-wise measurements with low spatial resolution may fail to detect inhomogeneous, anisotropic and unexpected deformations, and thus cannot reveal complex deformation processes. 3D point clouds generated from lase...

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