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Imaging properties of microlens arrays for integral imaging system

机译:集成成像系统微透镜阵列的成像特性

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When designing a system capable of capturing and displaying three-dimensional (3-D) moving images in real time by the integral imaging (II) method, one challenge is to eliminate pseudoscopic images. To overcome this problem, we propose a simple system with an array of three convex lenses. This paper first describes by geometrical optics the lateral magnification of the elemental optics and expansion of an elemental image, confirming that the elemental optics satisfies the conditions under which pseudoscopic images can be avoided. By the II method, adjacent elemental images must not overlap, a condition also satisfied by the proposed optical system. Next, the paper describes an experiment carried out to acquire and display 3-D images. The real-time system we have constructed comprises elemental optics array with 54(H) x 59(V) elements, a CCD camera to capture a group of elemental images created by the lens array, and a liquid crystal panel to display these images. The experiment results confirm that the system produces orthoscopic images in real time and so is effective for real-time application of the II method.
机译:当设计能够以积分成像(II)方法实时捕获和显示三维(3-D)运动图像的系统时,一个挑战是消除伪图像。为了克服这个问题,我们提出了一个简单的系统,具有三个凸透镜的阵列。本文首先通过几何光学来描述元素光学器件的横向放大率和元素图像的膨胀,确认元素光学器件满足可以避免伪镜片图像的条件。通过II方法,相邻的元素图像不得重叠,该条件也满足所提出的光学系统。接下来,本文描述了用于获取和显示3-D图像的实验。我们构建的实时系统包括具有54(h)x 59(v)元素的元素光学阵列,CCD摄像机,用于捕获由镜头阵列创建的一组元素图像,以及液晶面板以显示这些图像。实验结果证实,该系统实时产生正处于正视图像,因此对II方法的实时应用是有效的。

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