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June 4, 2026Data in Brief0 citationsOpen Access

Dataset describing two reference models for full-spectral lighting and daylight simulations together with implementations for two software systems

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DGDavid Geisler-MoroderUniversität InnsbruckMMMarshal MaskarenjUCLouvainGWGreg Ward

Key Points

  • The aim is to provide reference models for full-spectral daylight and electric lighting simulations that support evaluation of non-visual effects of light.
  • Dataset includes Rhino CAD geometry and spectral material data for office and factory hall models.
  • Interior reflectances measured using a handheld spectrometer; data collected from an online spectral materials database.
  • Example implementations in Radiance and OWL enable reproducible lighting simulations.
  • Office model replicates Room 518 geometry with west-facing façade; factory model adheres to European standard 15193.
  • Glazing transmittance derived from IGDB data; BSDFs for various venetian blinds generated in WINDOW.
  • Openly available dataset supports method validation and software comparison.

Abstract

A dataset of two spectral lighting simulation reference models – one office and one factory hall – is presented. It aims to demonstrate and support full-spectral daylight and electric lighting simulations and facilitate evaluation of non-visual effects of light. The dataset includes Rhino CAD geometry, comprehensive spectral material and light source data and window system BSDF data. Example implementations in the two software tools, Radiance and OWL, enable reproducible workflows and support adoption in other software. The dataset is openly available on Zenodo. The office model reproduces Room 518 at the University of Innsbruck, including a west-facing façade and interior furnishings. The factory hall model follows the proposed geometry in the European standard 15193 for building energy performance. Interior reflectances in the office were measured in-situ using a handheld spectrometer. Exterior spectra and factory hall materials matching specified reflectances were obtained from an online spectral materials database. Glazing transmittance was derived from IGDB data using LBNL Optics/WINDOW. BSDFs for venetian blinds at various tilt angles, and for a diffusing pane adapted from the Complex Glazing Database, were generated in WINDOW. Luminaires in both models are specified with photometric files (Eulumdat/IES) and lamp spectra (Fluorescent 840, 4000 K LED). The provided example implementations (Radiance, OWL) include prepared input data and scripts to run first spectral simulations; example results are also included. The dataset is prepared to support reuse by researchers, designers and software developers for method validation, software engineering and comparison, and development of spectral metrics and controls.

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Cite This Study

Geisler-Moroder et al. (2026) studied this question.

synapsesocial.com/papers/6a211549d499ed480b16e853https://doi.org/10.1016/j.dib.2026.112922
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