首页> 外文会议>International symposium on multispectral image processing and pattern recognition;MIPPR 2011 >High-precision Image Motion Measurement Applied for Space Camera Based on Hybrid Opto-digital Joint Transform Correlator
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High-precision Image Motion Measurement Applied for Space Camera Based on Hybrid Opto-digital Joint Transform Correlator

机译:基于混合光电联合变换相关器的空间相机高精度图像运动测量

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Hybrid opto-digital joint transform correlator (HODJTC) is effective for image motion measurement, but it is different from the traditional joint transform correlator (JTC) because it only has one process of optical Fourier transform and the intermediate joint power spectrum (JPS) is directly input to a digital unit to compute the image motion. In original HODJTC, the correlation image is obtained by using a global discrete Fourier transform operator. In fact, the location of cross-correlation peak corresponding to zero image motion is known and the maximum image shift can also be estimated. Thus, the local cross-correlation image can be directly obtained by adopting a local Fourier transform operator instead. With the pixel-level location of cross-correlation peak is obtained, the up-sampling technique is introduced to relocate the peak in even higher accuracy. Both the experiments and simulations demonstrate that the RMS (root-mean-square) error of motion determination can be controlled below 0.05 pixels, which is a very promising result for real application.
机译:混合光电联合变换相关器(HODJTC)对于图像运动测量非常有效,但它与传统联合变换相关器(JTC)不同,因为它只有一个光学傅里叶变换过程,并且中间联合功率谱(JPS)为直接输入到数字单元以计算图像运动。在原始的HODJTC中,通过使用全局离散傅立叶变换算符获得相关图像。实际上,对应于零图像运动的互相关峰的位置是已知的,并且还可以估计最大图像偏移。因此,可以通过采用局部傅立叶变换算子来直接获得局部互相关图像。通过获得互相关峰的像素级位置,引入了上采样技术,以更高的精度重新定位峰。实验和仿真均表明,运动测定的RMS(均方根)误差可以控制在0.05像素以下,这对于实际应用是非常有希望的结果。

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