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Optical design of a dual-channel two-focal-length system by utilizing azimuth property of PAL structure

机译:利用PAL结构的方位特性,双通道双焦距系统的光学设计

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An approach to design a dual-channel two-focal-length lens based on the panoramic annular lens (PAL) structure is presented in this paper. The method of establishing the second channel to eliminate the blind area has been explored in some documents, and mostly it is achieved by utilizing the front surface of the PAL block. But in this paper, we modified the PAL block and divided it into two channels according to their different azimuth direction. These two channels have different focal lengths. Thus, by rotating the system around its axis, optical step-zoom effect can be obtained. Finally, a dual-channel system with a radial zoom ratio of 3× is designed, of which the wide-angle channel has a field-of-view (FOV) of 60° (radial) ×60° (azimuthal) and the long focal length channel has a FOV of 20° (radial)×20° (azimuthal). These two channels share the same stop surface, relay lens, and the image sensor. And a thin glass plate with diffractive structure is placed before the image plane to further correct aberration and obtain a common back focal length for the two channels. This system may have applications in many fields, such as surveillance, robot vision, and foveal imaging.
机译:本文提出了一种基于全景环形透镜(PAL)结构的双通道两焦距透镜的方法。在一些文件中探讨了建立第二信道以消除盲区域的方法,并且主要通过利用PAL块的前表面来实现。但是,在本文中,我们修改了PAL块并根据其不同方位方向将其分成两个通道。这两个通道具有不同的焦距。因此,通过围绕其轴线旋转系统,可以获得光学步进缩放效果。最后,设计具有径向变焦比为3×的双通道系统,其中广角通道具有60°(径向)×60°(方位角)和长期的视野(FOV)。焦距信道具有20的FOV°(径向)×20°(方位角)。这两个通道共享相同的停止表面,继电镜和图像传感器。在图像平面之前放置具有衍射结构的薄玻璃板以进一步校正像差并获得两个通道的共同焦距。该系统可以在许多领域具有应用,例如监视,机器人视觉和污水成像。

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