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Texture classification using Gabor wavelets based rotation invariant features

机译:使用基于Gabor小波的旋转不变特征进行纹理分类

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摘要

Texture based image analysis techniques have been widely employed in the interpretation of earth cover images obtained using remote sensing techniques, seismic trace images, medical images and in query by content in large image data bases. The development in multi-resolution analysis such as wavelet transform leads to the development of adequate tools to characterize different scales of textures effectively. But, the wavelet transform lacks in its ability to decompose input image into multiple orientations and this limits their application to rotation invariant image analysis. This paper presents a new approach for rotation invariant texture classification using Gabor wavelets. Gabor wavelets are the mathematical model of visual cortical cells of mammalian brain and using this, an image can be decomposed into multiple scales and multiple orientations. The Gabor function has been recognized as a very useful tool in texture analysis, due to its optimal localization properties in both spatial and frequency domain and found widespread use in computer vision. Texture features are found by calculating the mean and variance of the Gabor filtered image. Rotation normalization is achieved by the circular shift of the feature elements, so that all images have the same dominant direction. The texture similarity measurement of the query image and the target image in the database is computed by minimum distance criterion.
机译:基于纹理的图像分析技术已广泛用于解释使用遥感技术获得的地表覆盖图像,地震迹线图像,医学图像以及按大型图像数据库中的内容进行查询。小波变换等多分辨率分析的发展催生了足够的工具来有效表征不同尺度的纹理。但是,小波变换缺乏将输入图像分解为多个方向的能力,这限制了它们在旋转不变图像分析中的应用。本文提出了一种使用Gabor小波进行旋转不变纹理分类的新方法。 Gabor小波是哺乳动物大脑视觉皮层细胞的数学模型,利用该模型,可以将图像分解为多个尺度和多个方向。由于Gabor函数在空间和频域上均具有最佳的定位特性,因此被认为是纹理分析中非常有用的工具,并已在计算机视觉中得到广泛使用。通过计算Gabor滤波图像的均值和方差可以找到纹理特征。旋转归一化是通过特征元素的圆移实现的,因此所有图像都具有相同的主导方向。通过最小距离准则计算数据库中查询图像与目标图像的纹理相似度。

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