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采用弯曲表面上微透镜的多通道架构广角相机。

Wide-angle camera with multichannel architecture using microlenses on a curved surface.

作者信息

Liang Wei-Lun, Shen Hui-Kai, Su Guo-Dung J

出版信息

Appl Opt. 2014 Jun 10;53(17):3696-705. doi: 10.1364/AO.53.003696.

Abstract

We propose a multichannel imaging system that combines the principles of an insect's compound eye and the human eye. The optical system enables a reduction in track length of the imaging device to achieve miniaturization. The multichannel structure is achieved by a curved microlens array, and a Hypergon lens is used as the main lens to simulate the human eye, achieving large field of view (FOV). With this architecture, each microlens of the array transmits a segment of the overall FOV. The partial images are recorded in separate channels and stitched together to form the final image of the whole FOV by image processing. The design is 2.7 mm thick, with 59 channels; the 100°×80° full FOV is optimized using ZEMAX ray-tracing software on an image plane. The image plane size is 4.53  mm×3.29  mm. Given the recent progress in the fabrication of microlenses, this image system has the potential to be commercialized in the near future.

摘要

我们提出了一种结合昆虫复眼和人眼原理的多通道成像系统。该光学系统能够缩短成像设备的轨道长度以实现小型化。多通道结构通过弯曲微透镜阵列实现,并且使用超环面透镜作为主透镜来模拟人眼,从而实现大视场(FOV)。采用这种架构,阵列中的每个微透镜传输整个视场的一部分。部分图像记录在单独的通道中,并通过图像处理拼接在一起以形成整个视场的最终图像。该设计厚度为2.7毫米,有59个通道;在像平面上使用ZEMAX光线追踪软件对100°×80°的全视场进行了优化。像平面尺寸为4.53毫米×3.29毫米。鉴于微透镜制造方面的最新进展,该成像系统在不久的将来具有商业化的潜力。

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