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Discrete pointvv 3D reconstruction algorithm based human pose estimation

机译:基于离散PointVV 3D重建算法的人类姿态估计

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摘要

The traditional method of human pose estimation lacks depth label in depth image, which leads to the low generalization ability of model due to single pose. A novel method of human pose estimation based on discrete point 3D reconstruction algorithm is proposed. Several cameras are placed around each other, and the internal parameters of the camera are calibrated by the classical calibration method, and the external parameters of the camera group are obtained. According to the two-dimensional skeleton, the human body region model is established, and the contour is matched with the human body model, so that the contour region is segmented, and then the three-dimensional human body model is constructed. According to the principle of discrete point 3D reconstruction algorithm, principal component analysis is used to transform the original data, eliminate the redundant correlation between the original human body posture data, establish the human body posture model, obtain 10 individual voxel sets, and estimate the 3D information of each point in the voxel set. In the process of feature extraction, two-dimensional attitude prediction, two-dimensional fusion layer and final conversion, the human body attitude estimation is realized. Experimental results show that this method can reduce the influence of image shadow on image recognition, and the estimation results are more accurate.
机译:传统的人类姿势估计方法缺乏深度图像的深度标签,这导致由于单个姿势导致模型的低概括能力。提出了一种基于离散点3D重建算法的人类姿态估计的新方法。几个相机彼此放置,并且通过经典校准方法校准相机的内部参数,获得摄像机组的外部参数。根据二维骨架,建立人体区域模型,并且轮廓与人体模型匹配,使得轮廓区域被分段,然后构造三维人体模型。根据离散点3D重建算法的原理,主要成分分析用于转换原始数据,消除原始人体姿势数据之间的冗余相关性,建立人体姿势模型,获得10个单独的体素集,并估计Voxel集中的每个点的3D信息。在特征提取的过程中,实现了二维姿态预测,二维融合层和最终转换,实现人体姿态估计。实验结果表明,该方法可以减少图像阴影对图像识别的影响,估计结果更准确。

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