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Gabor wavelet representation for 3-D object recognition

机译:Gabor小波表示法用于3-D目标识别

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This paper presents a model-based object recognition approach that uses a Gabor wavelet representation. The key idea is to use magnitude, phase, and frequency measures of the Gabor wavelet representation in an innovative flexible matching approach that can provide robust recognition. The Gabor grid, a topology-preserving map, efficiently encodes both signal energy and structural information of an object in a sparse multiresolution representation. The Gabor grid subsamples the Gabor wavelet decomposition of an object model and is deformed to allow the indexed object model match with similar representation obtained using image data. Flexible matching between the model and the image minimizes a cost function based on local similarity and geometric distortion of the Gabor grid. Grid erosion and repairing is performed whenever a collapsed grid, due to object occlusion, is detected. The results on infrared imagery are presented, where objects undergo rotation, translation, scale, occlusion, and aspect variations under changing environmental conditions.
机译:本文提出了一种使用Gabor小波表示的基于模型的对象识别方法。关键思想是在创新的灵活匹配方法中使用Gabor小波表示的幅度,相位和频率测量,该方法可以提供可靠的识别。 Gabor栅格是一种保留拓扑的地图,它以稀疏的多分辨率表示有效地编码了对象的信号能量和结构信息。 Gabor网格对对象模型的Gabor小波分解进行二次采样,并进行变形以使索引的对象模型与使用图像数据获得的相似表示匹配。模型和图像之间的灵活匹配使基于Gabor网格的局部相似性和几何变形的成本函数最小化。每当检测到由于物体阻塞导致的塌陷的网格时,就会进行网格腐蚀和修复。呈现了红外图像的结果,其中物体在不断变化的环境条件下经历旋转,平移,缩放,遮挡和纵横比变化。

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