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Design of a high-efficiency system with combined reflectors for a light-emitting diode front fog lamp

机译:用于光发光二极管前雾灯的组合反射器的高效系统设计

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摘要

This paper provides a design method for a light-emitting diode front fog lamp system based on a freeform surface and an improved quadric surface. First, a light-receiving reflector is used to converge the light-emitting diode beam to form an equivalent lighting point. Then, the relationship between the point and the light pattern on the work surface is calculated, and the freeform surface is constructed based on Snell's law and non-imaging optical theory. Finally, two compensated reflectors are added at both ends of the freeform surface to reflect the unutilized light to achieve the compensation effect. By application of combined reflectors, the light pattern at the work surface 25 m away can satisfy the requirement of ECE R19 Revision 7. Also, this system has the advantages of small size and high efficiency because lens or prism groups are avoided. And the utilization of a compensated surface also increases light efficiency. Finally, a prototype model is tested, which also meets the regulatory requirements.
机译:本文提供了一种基于自由形状表面和改进的二次表面的发光二极管前雾灯系统的设计方法。首先,光接收反射器用于会聚发光二极管梁以形成等效的照明点。然后,计算在工作表面上的点和光图案之间的关系,并且基于Snell的定律和非成像光学理论构建自由形状。最后,在自由形状表面的两端添加了两个补偿反射器,以反射未利润的光以实现补偿效果。通过应用组合反射器,工作表面的光图案距离可以满足ECE R19修订7的要求。此外,该系统的优点是尺寸小,效率高,因为避免了镜头或棱镜组。并且补偿表面的利用率也增加了光效率。最后,测试了原型模型,这也符合监管要求。

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  • 来源
    《Lighting Research & Technology》 |2020年第7期|883-894|共12页
  • 作者

    E Yang; A Ge; Y Liu; B Zhao; R Hao;

  • 作者单位

    Department of Light Sources and Illuminating Engineering School of Information Science and Engineering Institute for Electric Light Sources Fudan University Shanghai China;

    Department of Light Sources and Illuminating Engineering School of Information Science and Engineering Institute for Electric Light Sources Fudan University Shanghai China;

    Department of Light Sources and Illuminating Engineering School of Information Science and Engineering Institute for Electric Light Sources Fudan University Shanghai China;

    Department of Light Sources and Illuminating Engineering School of Information Science and Engineering Institute for Electric Light Sources Fudan University Shanghai China;

    Department of Light Sources and Illuminating Engineering School of Information Science and Engineering Institute for Electric Light Sources Fudan University Shanghai China;

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