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High-order aspherics:The SMS nonimaging design method applied to imaging optics

机译:高阶非球面:SMS非映像设计方法应用于成像光学

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The simultaneous multiple surface (SMS) method has been used to design nonimaging devices, such as solar concentrators and collimators, which work near the thermodynamic limit at highest efficiencies. The very highcompactness of these devices is obtained through the simultaneous design of two high-order (above 30~(th)) asphericsurfaces. In imaging optics, low-order aspheric surfaces were introduced to correct Seidel aberrations. The ease withwhich the SMS method calculates higher-order aspheric surfaces offers great advantages in imaging design. The SMS method can design N rotationally-symmetric surfaces that, by definition, form sharp images of N one-parameter subsets of rays. The design strategy consists in finding the best configuration of these subsets of rays inphase-space, one that ensures that image-quality specifications will be met by all non-design rays. As a first exampleof an SMS imaging device, a new video projection optics system is presented, featuring extremely short throw distance,high compactness and wide angle projection.
机译:同时多表面(SMS)方法已经用于设计非测距器件,例如太阳能集中器和准直器,其在最高效率下的热力学限制附近工作。通过同时设计两种高阶(高于30〜(TH)的非球面术而获得这些装置的非常高。在成像光学中,引入低阶非球面以校正Seidel像差。 SMS方法的缓解计算高阶非球面表面在成像设计方面具有很大的优势。 SMS方法可以设计n旋转对称表面,根据定义,形成光线的N单参数亚组的清晰图像。设计策略包括找到这些inphany-space的这些子集的最佳配置,可以确保所有非设计光线都会满足图像质量规范。作为SMS成像装置的第一个示例,提出了一种新的视频投影光学系统,具有极短的抛距,高紧凑性和广角投影。

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