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Optical design of an ultrashort throw ratio projector with two freeform mirrors

机译:超短比投影仪的光学设计,有两个自由镜

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In this work, an optical design approach is presented to design an ultrashort throw distance projection system by combination of an off-the-shelf refractive lens and two off-axis freeform mirrors. These two freeform mirrors are used to greatly shorten the projection distance by more than three times compared to conventional (rotationally symmetric) systems, while still maintaining a good imaging quality. Firstly, a direct design method that enables the simultaneous calculation of two off-axis freeform-profile mirrors by partially coupling more than three fields is introduced. The specifications of the conventional refractive lens are taken into account during this procedure. The pupil matching principle is applied to ensure good performance between the two sub-systems. The calculated mirrors then serve as a good starting point for optimization using commercial optical design software. To step from freeform profiles to freeform surfaces, the calculated two profiles are fitted into odd polynomials to evaluate the image quality and then re-fitted into XY polynomials for further optimization. Finally, the polynomial coefficients of the two freeform mirrors are imported into the optical design program. The merit function is built from RMS spot radii over the full field, and additional constraints are made for correcting distortion. After optimization, the calculated initial design quickly converges to a well performing imaging system. As an example, an ultrashort throw distance projection lens with a large 80-inch diagonal image at 400mm throw distance is designed, analyzed and compared with literature data. The values of MTF are over 0.6 at 0.5 1p/mm and the distortion is less than 1.5%: showing a very good and well balanced imaging performance over the entire field of view.
机译:在这项工作中,提出了一种光学设计方法,以通过组合搁置折射透镜和两个轴外自由镜组合设计超短射距投影系统。与传统(旋转对称的)系统相比,这两个自由镜用于大大缩短投影距离超过三次,同时仍保持良好的成像质量。首先,引入了通过部分耦合多于三个字段来同时计算两个轴外自由曲线镜的直接设计方法。在此过程中考虑了传统折射镜的规格。应用瞳孔匹配原理以确保两个子系统之间的良好性能。然后计算的镜子用作使用商业光学设计软件优化的良好起点。要从Freeform轮廓从自由形状曲线逐步到Freeform表面,所计算的两个轮廓装入奇数多项式中以评估图像质量,然后重新安装到XY多项式中以进一步优化。最后,将两个自由镜的多项式系数导入光学设计程序。 Merit函数由完整字段的RMS点半径构建,并且对校正失真进行了附加约束。优化后,计算出的初始设计将迅速收敛到良好的执行成像系统。作为示例,设计,分析并与文献数据进行了400mm投掷距离的超短射距投影镜头,并与400mm投掷距离。 MTF的值超过0.6,0.5 1p / mm,失真小于1.5%:在整个视野下显示非常好且良好的平衡成像性能。

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