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Data format standard for sharing light source measurements

机译:用于共享光源测量的数据格式标准

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摘要

Optical design requires accurate characterization of light sources for computer aided design (CAD) software. Various methods have been used to model sources, from accurate physical models to measurement of light output. It has become common practice for designers to include measured source data for design simulations. Typically, a measured source will contain rays which sample the output distribution of the source. The ray data must then be exported to various formats suitable for import into optical analysis or design software. Source manufacturers are also making measurements of their products and supplying CAD models along with ray data sets for designers. The increasing availability of data has been beneficial to the design community but has caused a large expansion in storage needs for the source manufacturers since each software program uses a unique format to describe the source distribution. In 2012, the Illuminating Engineering Society (IES) formed a working group to understand the data requirements for ray data and recommend a standard file format. The working group included representatives from software companies supplying the analysis and design tools, source measurement companies providing metrology, source manufacturers creating the data and users from the design community. Within one year the working group proposed a file format which was recently approved by the IES for publication as TM-25. This paper will discuss the process used to define the proposed format, highlight some of the significant decisions leading to the format and list the data to be included in the first version of the standard.
机译:光学设计需要计算机辅助设计(CAD)软件的光源的准确表征。从精确的物理模型到光输出的测量,已经使用了各种方法对光源进行建模。设计人员将测量的源数据包括在设计仿真中已经成为一种常见的做法。通常,被测光源将包含对光源的输出分布进行采样的射线。然后必须将射线数据导出为适合导入光学分析或设计软件的各种格式。光源制造商还对其产品进行测量,并为设计人员提供CAD模型以及射线数据集。数据可用性的提高对设计社区有利,但是由于每个软件程序都使用一种独特的格式来描述源分发,因此对源制造商的存储需求有了很大的扩展。 2012年,照明工程学会(IES)成立了一个工作组,以了解射线数据的数据要求并推荐标准文件格式。工作组包括来自提供分析和设计工具的软件公司的代表,提供度量的源测量公司,创建数据的源制造商以及设计社区的用户。在一年之内,工作组提出了一种文件格式,该格式最近被IES批准发布为TM-25。本文将讨论用于定义提议格式的过程,重点介绍导致该格式的一些重要决策,并列出要包含在该标准的第一版中的数据。

著录项

  • 来源
    《LED-based illumination systems》|2013年|88350D.1-88350D.8|共8页
  • 会议地点 San Diego CA(US)
  • 作者单位

    Synopsys, Inc, Optical Solution Group, 377 Simarano Dr., Marlboro, MA 01752 USA;

    ByHeart Consultants Limited, 620 Ballantree Rd., West Vancouver, BC V7S 1W3, Canada;

    Brandenburg GmbH, Technologiepark 19, 33100 Paderborn, Germany;

    OPTIS, ZE de La Farlede, 60 Rue Parmentier, 83210 La Farlede, France;

    Philips Research, High Tech Campus 34, 5656 AE Eindhoven, The Netherlands;

    Radiant Zemax LLC, 22908 NE Alder Crest Drive, Redmond, WA 98053 USA;

    Breault Research Organization, Inc, 6400 East Grant Road, Tucson, Arizona 85715 USA;

    Lambda Research Corporation, 25 Porter Rd, Littleton, MA 01460 USA;

    Opsira GmbH, Leibnizstrasse 20, 88250 Weingarten, Germany;

    Nichia America Corporation, 48561 Alpha Drive, Suite 100, Wixom, MI 48393, USA;

    OPTIS, ZE de La Farlede, 60 Rue Parmentier, 83210 La Farlede, France;

    OSRAM Opto Semiconductors Inc., 1150 Kifer Road, Sunnyvale, CA 94086 USA;

    LTI Optics, LLC, 10850 Dover St., Westminster, CO, 80021 USA;

    Photon Engineering, LLC, 440 S Williams Blvd, Tucson, AZ 85711 USA;

    OSRAM GmbH, Research Europe RD, SIGMA Technopark, Geb. 10, Werner-von-Siemens-Strasse 6, 86159 Augsburg, Germany;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LED; illumination; illumination engineering; source modeling; solid-state lighting;

    机译:发光二极管;照明;照明工程;源建模;固态照明;

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