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Optical Design of LCOS Optical Engine and Optimization With Genetic Algorithm

机译:LCOS光学引擎的光学设计及遗传算法优化

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This paper demonstrates an optical design of miniature of LCOS optical engine and optics with white light-emitting diode (LED) and the most importantly, proposes a new optimization method for non-image optics via Genetic Algorithm (GA) written in Optical Software ASAP, in order to achieve best performance for light efficiency and uniformity. Thanks to the development of modern digital equipment, optimization work for non-image optics plays a role in modern optical engineering. So far Least Damping Square, Taguchi Fuzzy, and simulation annealing methods have been introduced and some of them has been applied to many items of commercial simulation software. However, GA is first introduced in this paper for non-image optical design and optimization, although it has been for many years been used as effective optimization method in image optics; In this paper, GAs are written in the form of macro language from ASAP. During the design process, we used one OPTEK Technology OVS3WBCR44 LED as the light source of the general projection display. Because of the extensiveness of the LEDs, the collection efficiency within the desired acceptance angle was not expected to be high. Due to the particular acceptance angle (cone), we needed a condenser lens system, which satisfied the light small angle incident to 0.59-in liquid-crystal-on-silicon (LCOS) pixels. The optical engine in this paper is designed for a compact LCOS projector with a white LED light source and the employment of an LCOS panel has been reduced to one piece in order to get the best volumetric size. Optical design specification is mainly for an 11" projected screen, whose objective distance is close to 420 mm with fixed focal lens. GA methods are applied in this research in order to achieve maximum brightness and uniformity. Compared to traditional optimization methods, such as Least Damping Square, the GA used in this research gives reasonably good results.
机译:本文演示了LCOS光学引擎和带有白色发光二极管(LED)的光学系统的缩影的光学设计,最重要的是,通过用光学软件ASAP编写的遗传算法(GA)提出了一种新的非图像光学优化方法,为了获得最佳的光效率和均匀性。由于现代数字设备的发展,非图像光学的优化工作在现代光学工程中发挥了重要作用。到目前为止,已经介绍了最小阻尼平方,Taguchi Fuzzy和模拟退火方法,其中一些已应用于许多商业模拟软件。然而,尽管GA多年来一直被用作图像光学中的有效优化方法,但它还是首次用于非图像光学设计和优化。本文以ASAP的宏语言形式编写了GA。在设计过程中,我们使用了一种OPTEK技术的OVS3WBCR44 LED作为通用投影显示器的光源。由于LED的广泛性,预期在期望的接受角内的收集效率不会很高。由于特定的接受角(cone),我们需要一个聚光透镜系统,该透镜系统必须能够满足入射到0.59英寸硅上液晶(LCOS)像素的光小角度。本文中的光学引擎是为带有白色LED光源的紧凑型LCOS投影机设计的,为了获得最佳的体积尺寸,LCOS面板的使用减少到了一件。光学设计规范主要针对11英寸投影屏,其定焦镜头的物距接近420 mm。本研究采用GA方法以实现最大的亮度和均匀性。与传统的优化方法(如Least)相比在这项研究中使用的遗传算法阻尼正方形给出了相当不错的结果。

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