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Implementation of a photorefractive binary joint transform correlator

机译:光折变二元联合变换相关器的实现

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摘要

The use of photorefractive materials such as Bi12SiO20 as dynamic holographic media is becoming an interesting alternative to that of the current liquid-crystal-based modulators in real-time optical image processing. We present an experimental realization of optical correlation for pattern recognition by means of a photorefractive joint transform correlator. The correlator operates with a liquid-crystal television as the input and a photorefractive crystal at the recording plane. We consider two possible ways of registering the Fourier plane information: conventional detection of the joint power spectrum, and utilization of only phase information at the Fourier plane by suitable preprocessing of the scene and the reference at the object plane. We compare the latter case with the performance of a binary joint transform correlator. Analysis, simulations, and experimental results are presented. (C) 1998 Optical Society of America. [References: 28]
机译:在实时光学图像处理中,将诸如Bi12SiO20之类的光折变材料用作动态全息介质正在成为当前液晶基调制器的一种有趣替代方法。我们提出了通过光折射联合变换相关器进行模式识别的光学相关性的实验实现。相关器用液晶电视作为输入,并在记录平面上用光折射晶体工作。我们考虑了两种可能的方式来注册傅立叶平面信息:对联合功率谱的常规检测,以及通过对场景和对象平面上的参考进行适当的预处理,仅在傅立叶平面上利用相位信息。我们将后一种情况与二进制联合变换相关器的性能进行比较。介绍了分析,模拟和实验结果。 (C)1998年美国眼镜学会。 [参考:28]

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