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Geometric superresolution by using an optical mask

机译:使用光学掩模的几何超分辨率

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In optical imaging, the resolution of the imaging system is not only limited by the aperture and imperfection of the lens, but also by the CCD nonzero pixel size and separation between the two consecutive pixels. We deal only with the geometric superresolution and assume that the size of the CCD pixels is much smaller in comparison with the separation between the pixels. The separation between the pixels limits the resolution of the CCD camera. Our object is to address this problem. In the proposal, we focus on exceeding the geometric resolution with a new approach in which no moving element of the imaging system is used, but only a mask is placed at the Fourier transform plane. This mask encodes the input data. The encoded image is captured by the CCD. The captured image is then Fourier transformed and a decoding mask is used to nullify the effect of undersampling by the CCD. Mathematical modeling and simulation in one dimension are presented.
机译:在光学成像中,成像系统的分辨率不仅受光圈和镜头缺陷的限制,而且还受CCD非零像素大小和两个连续像素之间的距离的限制。我们仅处理几何超分辨率,并假设CCD像素的大小与像素之间的间隔相比要小得多。像素之间的间隔限制了CCD摄像机的分辨率。我们的目标是解决这个问题。在提案中,我们专注于通过一种新的方法超越几何分辨率,在这种新方法中,不使用成像系统的移动元件,而仅将掩模放置在傅立叶变换平面上。此掩码对输入数据进行编码。编码的图像由CCD捕获。然后将捕获的图像进行傅立叶变换,并使用解码蒙版抵消CCD欠采样的影响。一维数学建模和仿真。

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