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Latest developments in micro-optical artificial compound eyes: a promising approach for next generation ultracompact machine vision

机译:微光学人工复合眼的最新动态:下一代超自联机视觉的有希望的方法

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The visual revolution triggered by the commercial application of digital image capturing devices generates the need for new miniaturized and cheap optical imaging systems and cameras. However, in imaging we observe a permanent miniaturization of elements but always similar optical principles are applied which have been known to the optical designers for many decades. With the newly gained spectrum of technological capabilities in micro- optics such as photolithography it is time to exploit completely new imaging principles such as for instance the microlens array imaging. In this paper we present an overview of our latest developments on: the technology and image processing of the artificial apposition compound eye, a rotating artificial apposition compound eye column for panoramic vision, an artificial apposition compound eye on a curved basis and an ultra-short, large object-size microscope. All the systems have a total track of below or only a few mm in common, while at the same time having an optical performance comparable to that of the conventional exemplars, e.g. a resolution of 50LP/mm over a field of 4.5mm for the large object-size microscope.
机译:通过数字图像捕获装置的商业应用触发的视觉革命产生了对新型小型化和廉价光学成像系统和摄像机的需求。然而,在成像中,我们观察永久性的元件小型化,但始终应用了相似的光学原理,这些原理已经在光学设计师多数十年来。随着微光学等微光学的新增技术能力谱,是时间来利用完全新的成像原理,例如微透镜阵列成像。在本文中,我们概述了我们的最新发展:人造链接复合眼的技术和图像处理,一种用于全景视觉的旋转人造宿主化合物眼柱,弯曲的基础上的人造链接复合眼睛和超短,大型物体尺寸显微镜。所有系统的总轨道低于以下或仅少数毫米,同时具有与传统示例的光学性能相当,例如具有与传统示例的光学性能相当。对于大型物体尺寸显微镜,在4.5mm的场上分辨率为50Lp / mm。

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