Xu Chen, Gong Chen, Wang Yongtian, Song Weitao
Appl Opt. 2022 Jun 10;61(17):5189-5197. doi: 10.1364/AO.456083.
For conventional ultra-wide-angle or oblique cameras, it is difficult to fully correct the - distortion without the scarification of the edge image performance. In this paper, we propose a linear field-of-view (FOV) oblique imaging system by varying the entrance pupil size over the FOV with freeform mirrors, and thus the diffraction limit around the edge field can be improved. An off-axis reflective system with conic surfaces has been selected as the initial system, and a point-by-point surface design method is then applied on the primary mirror to increase the entrance pupil size for edge fields in the FOV direction. All surfaces for the system converted to freeform during the optimization process, and the FOV of the final design can achieve +35 to +65, with a distortion less than 1.1%. It is possible to achieve a wide-linear FOV over 130° with a low distortion by the integration of two oblique systems and a central imaging channel.
对于传统的超广角或倾斜相机,在不牺牲边缘图像性能的情况下,很难完全校正畸变。在本文中,我们提出了一种线性视场(FOV)倾斜成像系统,通过使用自由曲面镜在视场内改变入瞳大小,从而可以提高边缘视场周围的衍射极限。已选择具有圆锥面的离轴反射系统作为初始系统,然后在主镜上应用逐点曲面设计方法,以增加视场方向上边缘视场的入瞳大小。在优化过程中,系统的所有表面都转换为自由曲面,最终设计的视场可以达到+35至+65,畸变小于1.1%。通过集成两个倾斜系统和一个中央成像通道,可以实现超过130°的宽线性视场且畸变较低。