Bridging Observed and Modeled Cities: Multi-Band Consensus Footprints for MLS-to-CityGML Registration in Urban Environments

This paper presents a multimodal 3D data fusion workflow tailored for registering mobile laser scanning (MLS) point clouds to CityGML semantic building models (MLS-to-CityGML) in urban street environments. The proposed method first extracts stable footprint features from MLS fragments using a multi-band consensus filtering strategy, which suppresses noise and non-building elements in MLS observations. In parallel, 2D target features are derived from CityGML Level of Detail 2 (LoD2) building geometry by extracting and cleaning ground-contact footprint segments. The resulting representations are aligned in 2D using raster-based distance-transform matching, and the estimated pose is subsequently transferred to 3D through vertical alignment and refined using the plane-voxel generalized iterative closest point (PV-GICP) algorithm. Finally, MLS drift analysis is conducted based on adaptive fragmentation. Evaluation across five urban scenarios shows that the proposed multi-band consensus filter provides reliable coarse initialization. The mean horizontal residual of all evaluated scenes achieves 0.041m after coarse registration, while subsequent PV-GICP refinement further reduces the overall mean residual from 0.065m to 0.015 m. The experimental results demonstrate the workflow as a robust coarse-to-fine registration strategy for structured urban environments, thereby providing a reliable georeferencing basis for updating city-scale semantic models.

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Publication Details

Journal
ISPRS annals of the photogrammetry, remote sensing and spatial information sciences
Published
2026-09-28
DOI
https://doi.org/10.5194/isprs-annals-xii-4-w1-2026-259-2026
Primary Topic
Remote Sensing and LiDAR Applications
Type
article
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article

Bridging Observed and Modeled Cities: Multi-Band Consensus Footprints for MLS-to-CityGML Registration in Urban Environments

Yihui Yang, Marco Antonio Ortiz Rincón, Christoph Holst
ISPRS annals of the photogrammetry, remote sensing and spatial information sciences
Remote Sensing and LiDAR Applications
article

Bridging Observed and Modeled Cities: Multi-Band Consensus Footprints for MLS-to-CityGML Registration in Urban Environments

Yihui Yang, Marco Antonio Ortiz Rincón, Christoph Holst
article en

Abstract

This paper presents a multimodal 3D data fusion workflow tailored for registering mobile laser scanning (MLS) point clouds to CityGML semantic building models (MLS-to-CityGML) in urban street environments. The proposed method first extracts stable footprint features from MLS fragments using a multi-band consensus filtering strategy, which suppresses noise and non-building elements in MLS observations. In parallel, 2D target features are derived from CityGML Level of Detail 2 (LoD2) building geometry by extracting and cleaning ground-contact footprint segments. The resulting representations are aligned in 2D using raster-based distance-transform matching, and the estimated pose is subsequently transferred to 3D through vertical alignment and refined using the plane-voxel generalized iterative closest point (PV-GICP) algorithm. Finally, MLS drift analysis is conducted based on adaptive fragmentation. Evaluation across five urban scenarios shows that the proposed multi-band consensus filter provides reliable coarse initialization. The mean horizontal residual of all evaluated scenes achieves 0.041m after coarse registration, while subsequent PV-GICP refinement further reduces the overall mean residual from 0.065m to 0.015 m. The experimental results demonstrate the workflow as a robust coarse-to-fine registration strategy for structured urban environments, thereby providing a reliable georeferencing basis for updating city-scale semantic models.

ISPRS annals of the photogrammetry, remote sensing and spatial information sciencesVol. XII-4/W1-2026(0)
Technical University of Munich (DE)
Sustainable cities and communities
Openalex Percentile: Top 19%
Remote Sensing and LiDAR Applications
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Bridging Observed and Modeled Cities: Multi-Band Consensus Footprints for MLS-to-CityGML Registration in Urban Environments — Yihui Yang, Marco Antonio Ortiz Rincón, et al. · ISPRS annals of the photogrammetry, remote sensing and spatial information sciences (2026) | TGRS Research Map | TGRS