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INCOHERENT OPTICAL IMAGE PROCESSING WITH ACOUSTO-OPTIC PUPIL-PLANE FILTERING

机译:声光小平面滤波的不相干光学图像处理

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We describe an incoherent image processor that uses orthogonally oriented one-dimensional acousto-optic cells to implement dynamic, arbitrary bipolar point-spread functions (PSF's). Arbitrary PSF's are implemented as a linear superposition in time of separable PSF's. The use of incoherent illumination increases the input field of view over that provided by coherent illumination, and implementation of the PSF by a pupil-plane filter yields a simple, compact single-lens imaging system. The acousto-optic cells offer a faster PSF update rate than that of conventional spatial light modulators, which is a critical issue for the implementation of a bipolar PSF as a subtraction between its positive and rectified negative parts. Initial experimental results are presented that demonstrate the realization of an arbitrary nonseparable PSF, image convolution with a bipolar PSF, two-dimensional image correlation, and an increased processor field of view. [References: 16]
机译:我们描述了一种不相干的图像处理器,该处理器使用正交的一维声光单元来实现动态的,任意的双极性点扩展函数(PSF's)。任意PSF被实现为可分离PSF时间上的线性叠加。非相干照明的使用比相干照明提供的输入视野增加了输入视野,并且通过光瞳平面滤镜实现PSF产生了简单,紧凑的单镜头成像系统。声光电池提供的PSF更新速率比常规空间光调制器快,这对于实现双极PSF作为其正负整流部分之间的减法而言是一个关键问题。初步的实验结果表明,实现了任意不可分的PSF,具有双极PSF的图像卷积,二维图像相关性以及增加的处理器视场。 [参考:16]

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