Dynamic 3D Solar Irradiation Modelling for Vehicle-Integrated Photovoltaics. High-Resolution Route-Based Assessment of Electric Bus Fleets Using CityGML and Distributed PostGIS Processing

This study presents a scalable framework for estimating solar energy yield from vehicle-integrated photovoltaics (VIPV) on electric buses in dynamic urban environments. It combines semantic 3D CityGML models, distributed PostGIS/Citus processing, CAMS solar data, and high-resolution GTFS trajectories. Direct, diffuse, and reflected radiation are calculated through ray-casting and geometry-based methods, enabling surface-specific assessment of urban shading and reflection. The framework is coupled with the VECTO vehicle energy model to evaluate PV yield against energy consumption. Results show that urban shading can reduce irradiation by more than 20%, while VIPV can cover approximately 2.8–4.1% of annual energy demand for typical electric bus operations. Prior validation using vehicle-mounted sensors confirmed that the 3D approach outperforms conventional 2.5D DSM methods. The distributed architecture supports fleet-scale simulations and integration into CityGML digital twins through Dynamizer, providing a transferable tool for sustainable mobility planning.

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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-w1-2026-41-2026
Primary Topic
Solar Radiation and Photovoltaics
Type
article
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Dynamic 3D Solar Irradiation Modelling for Vehicle-Integrated Photovoltaics. High-Resolution Route-Based Assessment of Electric Bus Fleets Using CityGML and Distributed PostGIS Processing

Ulrich Leopold, Philippe Pinheiro, Christian Braun, David Pera
ISPRS annals of the photogrammetry, remote sensing and spatial information sciences
Solar Radiation and Photovoltaics
article

Dynamic 3D Solar Irradiation Modelling for Vehicle-Integrated Photovoltaics. High-Resolution Route-Based Assessment of Electric Bus Fleets Using CityGML and Distributed PostGIS Processing

Ulrich Leopold, Philippe Pinheiro, Christian Braun, David Pera
article en

Abstract

This study presents a scalable framework for estimating solar energy yield from vehicle-integrated photovoltaics (VIPV) on electric buses in dynamic urban environments. It combines semantic 3D CityGML models, distributed PostGIS/Citus processing, CAMS solar data, and high-resolution GTFS trajectories. Direct, diffuse, and reflected radiation are calculated through ray-casting and geometry-based methods, enabling surface-specific assessment of urban shading and reflection. The framework is coupled with the VECTO vehicle energy model to evaluate PV yield against energy consumption. Results show that urban shading can reduce irradiation by more than 20%, while VIPV can cover approximately 2.8–4.1% of annual energy demand for typical electric bus operations. Prior validation using vehicle-mounted sensors confirmed that the 3D approach outperforms conventional 2.5D DSM methods. The distributed architecture supports fleet-scale simulations and integration into CityGML digital twins through Dynamizer, providing a transferable tool for sustainable mobility planning.

ISPRS annals of the photogrammetry, remote sensing and spatial information sciencesVol. XII-4/W1-2026(0)
Luxembourg Institute of Science and Technology (LU)
Openalex Percentile: Top 9%
Solar Radiation and Photovoltaics
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Dynamic 3D Solar Irradiation Modelling for Vehicle-Integrated Photovoltaics. High-Resolution Route-Based Assessment of Electric Bus Fleets Using CityGML and Distributed PostGIS Processing — Ulrich Leopold, Philippe Pinheiro, et al. · ISPRS annals of the photogrammetry, remote sensing and spatial information sciences (2026) | TGRS Research Map | TGRS