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List of file formats for luminaire radiometric data

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This list article lists file formats for luminaire radiometric data. File formats from standards organizations are grouped in Table 1 and other formats appear in Table 2.

Overview

Computer files using these formats are designed to be imported into lighting simulation software for architectural lighting design, and are not readily interpreted by human readers.[1] They typically contain data describing the light output of luminaires (i.e., light fixtures), but can also represent the lamps (i.e., light bulbs) and other kinds of light sources used within luminaires. If such a file exists for a given lighting product, it can usually be obtained from a vendor (e.g., manufacturer website).

Some formats were only designed to describe visible radiation (i.e., light), but can be adapted to describe other kinds of optical radiation—namely ultraviolet radiation and/or infrared radiation—if the file is appropriately annotated and the user understands the deviation.[2][3] Other formats were explicitly designed to describe any kind of optical radiation to support the design and analysis of systems for germicidal, horticulture, lighting, heating, and other applications.[4][5]

Polar plot of luminous intensity
Polar plot of the luminous intensity distribution for a luminaire with Lambertian downlight (80%) and uplight (20%)

Whereas photometry covers the measurement of light (typically weighted by wavelength according to a luminous efficiency function), radiometry more broadly covers the measurement of optical radiation (sometimes extended to other kinds of electromagnetic radiation) without regard for spectral sensitivity.[6] Photometry is thus a subset or branch of radiometry. This page focuses on file formats that include one or more of the following kinds of radiometric data:

These granular data can be used to calculate other metrics such as luminous flux (e.g., total lumen output), beam angle, and correlated color temperature. Notably, the reverse is often impossible (e.g., typically cannot derive SPD from CCT).[10] With additional information, such as distance and angle of incidence, luminous intensity distribution data can also be used to calculate illuminance (by combining the cosine law with the inverse-square law[11][7]) and other quantities.

Formats often accommodate additional kinds of data useful in designing systems (e.g., electrical input power, physical dimensions). Some formats can also contain photon intensity distribution data, which capture photon intensity data in multiple directions; such data is based on photon counting, which is distinct from radiometry and can for example be useful when designing horticultural lighting systems to provide sufficient photosynthetically active radiation (PAR).

File formats listed

More information File format, Filename extensions ...
Table 1. File formats from standards organizations
File formatFilename extensionsEditionsStatusSupported kinds of distribution data
CIBSE TM14.c1s, .cc, .cib, .tml1988[12]ArchivedLuminous intensity
EN 13032-1.cen2004, 2012[13]Active European standard, based on archived CIE 102-1993[14]Luminous intensity
IES LM-63.ies1986, 1991, 1995, 2002, 2019, 2025[15]Active ANSI standardLuminous intensity
IES TM-27.spdx2014, 2020[16]Active ANSI standardSPD
IES TM-33.json, .xml2018, 2023[17]Active ANSI standardLuminous intensity, photon intensity, radiant intensity, SPD, ASRID
ISO 16739-1 (IFC).ifc, .ifcXML, .ifcZIP, .ttl, .rdf2005, 2013, 2018, 2024[18][19]Active ISO standardLuminous intensity
UNI 11733.json, .xml2019,[20] 2020[21]Active Italian standardLuminous intensity, photon intensity, radiant intensity, SPD, ASRID
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More information File format, Filename extensions ...
Table 2. File formats not from standards organizations
File formatFilename extensionsEditionsStatusSupported kinds of distribution data
ATLA S001 and S001-A.json, .xml2018,[22] 2021[23]Open file format, basis for IES TM-33 and UNI 11733[24][25][26][27][28]Luminous intensity, photon intensity, radiant intensity, SPD, ASRID
DIALux.uldn/aProprietary file format[29][30]Luminous intensity
EULUMDAT.exl, .ldt1990, 1998[31][32]Open file format, de facto European standard[33][34][1][35]Luminous intensity
GLDF.gldf, .xmlv1.0.rc3[36]Open file format, requires other formats for luminous intensity distribution data (via ZIP), remains in development[37]Luminous intensity, SPD
LiteStar 4D.oxl2015[38]Open file format in XML[39]Luminous intensity, SPD
Relux.rolfn/aProprietary file format[40]Luminous intensity
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Building information modeling

Building information modeling (BIM) involves the generation and management of digital representations of the physical and functional characteristics of buildings or other physical assets and facilities. Some file formats used in BIM can include luminous intensity distribution data but may not specify its format.

  • The photometry element of the Green Building XML (gbXML) schema has been left open for use with other specifications (e.g., IES LM-63, CIBSE TM14, EULUMDAT).[41]
  • The draft Global Lighting Data Format (GLDF) similarly relies on other specifications via its photometry element.[42]
  • In contrast, the Industry Foundation Classes (IFC) allows use of its own format or another specification via its IfcLightDistributionDataSourceSelect element.[43]

Character encoding

Character encoding (the use of a numeric value to digitally represent each character) can differ between file formats. For example, IES LM-63 uses ASCII encoding, while IES TM-33 uses UTF-8 encoding.

See also

References

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