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A novel 3D skeleton algorithm based on neutrosophic cost function

机译:基于中智成本函数的新型3D骨架算法

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摘要

A skeleton provides a synthetic and thin representation of three dimensional objects, and is useful for shape description and recognition. In this paper, a novel 3D skeleton algorithm is proposed based on neutrosophic cost function. Firstly, the distance transform is used to a 3D volume, and the distance matrix is obtained for each voxel in the volume. The ridge points are identified based on their distance transform values and are used as the candidates for the skeleton. Then, a novel cost function, namely neutrosophic cost function (NCF) is proposed based on neutrosophic set, and is utilized to define the cost between each ridge points. Finally, a shortest path finding algorithm is used to identify the optimum path in the 3D volume with least cost, in which the costs of paths are calculated using the new defined NCF. The optimum path is treated as the skeleton of the 3D volume. A variety of experiments have been conducted on different 3D volume. The experimental results demonstrate the better performance of the proposed method. It can identify the skeleton for different volumes with high accuracy. In addition, the proposed method is robust to the noise on the volume. This advantage will lead it to wide application in the skeleton detection applications in the real world. (C) 2015 Elsevier B.V. All rights reserved.
机译:骨架提供了三维对象的合成和稀疏表示,对于形状描述和识别很有用。本文提出了一种基于中智成本函数的新型3D骨架算法。首先,将距离变换用于3D体积,并为该体积中的每个体素获取距离矩阵。脊点基于其距离变换值进行标识,并用作骨架的候选项。然后,基于中智集提出了一种新的成本函数,即中智成本函数(NCF),并用于定义各脊点之间的成本。最后,使用最短路径查找算法以最低的成本确定3D体积中的最佳路径,其中使用新定义的NCF计算路径的成本。最佳路径被视为3D体积的骨架。在不同的3D体积上进行了各种实验。实验结果表明,该方法具有较好的性能。它可以高精度地识别不同体积的骨架。另外,所提出的方法对于体积上的噪声是鲁棒的。这一优势将使其在现实世界的骨架检测应用中得到广泛应用。 (C)2015 Elsevier B.V.保留所有权利。

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