Wang Kai, Chen Fei, Liu Zongyuan, Luo Xiaobing, Liu Sheng
Division of MOEMS, Wuhan National Laboratory for Optoelectronics, Wuhan, China.
Opt Express. 2010 Jan 18;18(2):413-25. doi: 10.1364/OE.18.000413.
Application specific LED packaging (ASLP) is an emerging technology for high performance LED lighting. We introduced a practical design method of compact freeform lens for extended sources used in ASLP. A new ASLP for road lighting was successfully obtained by integrating a polycarbonate compact freeform lens of small form factor with traditional LED packaging. Optical performance of the ASLP was investigated by both numerical simulation based on Monte Carlo ray tracing method and experiments. Results demonstrated that, comparing with traditional LED module integrated with secondary optics, the ASLP had advantages of much smaller size in volume (approximately 1/8), higher system lumen efficiency (approximately 8.1%), lower cost and more convenience for customers to design and assembly, enabling possible much wider applications of LED for general road lighting. Tolerance analyses were also conducted. Installation errors of horizontal and vertical deviations had more effects on the shape and uniformity of radiation pattern compared with rotational deviation. The tolerances of horizontal, vertical and rotational deviations of this lens were 0.11 mm, 0.14 mm and 2.4 degrees respectively, which were acceptable in engineering.
专用LED封装(ASLP)是一种用于高性能LED照明的新兴技术。我们介绍了一种用于ASLP中扩展光源的紧凑型自由曲面透镜的实用设计方法。通过将小尺寸的聚碳酸酯紧凑型自由曲面透镜与传统LED封装相结合,成功获得了一种用于道路照明的新型ASLP。通过基于蒙特卡罗光线追踪方法的数值模拟和实验研究了ASLP的光学性能。结果表明,与集成了二次光学元件的传统LED模块相比,ASLP具有体积小得多(约为1/8)、系统流明效率高(约8.1%)、成本低以及客户设计和组装更方便等优点,使得LED在一般道路照明中的应用可能更加广泛。还进行了公差分析。与旋转偏差相比,水平和垂直偏差的安装误差对辐射方向图的形状和均匀性影响更大。该透镜的水平、垂直和旋转偏差公差分别为0.11毫米、0.14毫米和2.4度,在工程上是可以接受的。