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Parametric elliptic fourier descriptors for automated extraction of gait features for people identification

机译:用于自动提取步态特征以进行人员识别的参数化椭圆傅立叶描述符

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The interest in gait as a biometric is strongly motivated by the urgent necessity for automated recognition systems for surveillance applications and forensic analysis. Many studies have now shown that it is possible to recognize people by the way they walk i.e. Gait. As yet there has been little formal study of people recognition using the kinematic-related gait features. In this research study, we have investigated the use of Elliptic Fourier Descriptor for the temporal markerless extraction of human joints. We describe a model-based method whereby spatial model templates for the human motion are described in a parameterized form using the Elliptic Fourier Descriptors accounting for the different variations of scale and rotation. Gait features include the angular measurements of the legs as well as the spatial displacement of the body trunk. To further refine gait features based on their discriminability, a feature selection algorithm which is applied using a proposed validation-criterion based on the proximity of neighbors. Initial experiments have revealed that gait angular measurements derived from the joint motions mainly the ankle, knee and hip angles embed most of the discriminatory potency for gait identification.
机译:步态作为生物特征的兴趣是由用于监视应用和法医分析的自动识别系统的迫切需求所激发的。现在许多研究表明,可以通过人们的行走方式(即步态)来识别人们。迄今为止,很少有关于运动学相关步态特征的人们识别的正式研究。在这项研究中,我们研究了椭圆傅立叶描述符在人类关节的时间无标记提取中的使用。我们描述了一种基于模型的方法,其中使用椭圆傅里叶描述符以比例化形式说明了人类运动的空间模型模板,该模型考虑了比例和旋转的不同变化。步态特征包括腿的角度测量以及躯干的空间位移。为了根据步态特征的可分辨性进一步细化步态特征,使用了一种特征选择算法,该算法使用一种基于邻居的接近度的验证准则来应用。初步实验表明,步态角测量值主要来自于踝关节,膝关节和髋关节的关节运动,这些步态角嵌入了大多数识别步态的能力。

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