Compact zooming optical systems for panoramic and telescopic applications based on curved image sensor

Do Hyeon Kim, Gil Ju Lee, Y. Song
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引用次数: 1

Abstract

Abstract. Biological eyes in nature have strongly inspired novel optical systems. In this regard, imaging systems mimicking fish eyes and human eyes have been reported for having a wide field-of-view (FoV) and relatively higher magnification properties, respectively. However, most of these systems have complex lens configurations because of their flat image sensors. As these optical systems are bulky, heavy, and expensive, they have limited application in small devices (e.g., drones and mobile phones). In addition to a simplistic design, multi-functionality is essential for broad applications. Therefore, this study proposes a compact zooming optical system (CZOS) that combines the properties of natural vision systems (i.e., human and fish eyes) using a curved focal plane. The CZOS controls the zoom range through the modification of the distances between the single front lens (i.e., negative meniscus) and dual rear lens (i.e., bi-convex/positive meniscus lenses) groups. In the proposed system, the panoramic mode had an FoV of 200 deg and a magnification of 0.23, whereas the conversion of the system to the high magnification mode increased the magnification over two times with an FoV of 70 deg. These promising results demonstrate that the proposed simple imaging system is applicable to small-scale electronics.
基于曲面图像传感器的全景和伸缩应用的紧凑变焦光学系统
摘要自然界的生物眼睛强烈地激发了新的光学系统。在这方面,据报道,模拟鱼眼和人眼的成像系统分别具有宽视场(FoV)和相对较高的放大倍率。然而,大多数这些系统都有复杂的镜头配置,因为他们的平面图像传感器。由于这些光学系统体积大、重量重且价格昂贵,它们在小型设备(例如无人机和移动电话)中的应用有限。除了简单的设计之外,多功能对于广泛的应用也是必不可少的。因此,本研究提出了一种紧凑的变焦光学系统(CZOS),该系统使用弯曲的焦平面结合了自然视觉系统(即人类和鱼的眼睛)的特性。CZOS通过修改单前镜头(即负半月板)和双后镜头(即双凸/正半月板镜头)组之间的距离来控制变焦范围。在该系统中,全景模式的视场为200°,放大倍率为0.23,而系统转换为高放大倍率模式后,放大倍率提高了两倍以上,视场为70°。这些令人满意的结果表明,所提出的简单成像系统适用于小型电子产品。
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CiteScore
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