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Speed-invariant gait recognition based on Procrustes Shape Analysis using higher-order shape configuration

机译:基于高级形状配置的Procrustes Shape Analysis的速度不变步态识别

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Walking speed change is considered a typical challenge hindering reliable human gait recognition. This paper proposes a novel method to extract speed-invariant gait feature based on Procrustes Shape Analysis (PSA). Two major components of PSA, i.e., Procrustes Mean Shape (PMS) and Procrustes Distance (PD), are adopted and adapted specifically for the purpose of speed-invariant gait recognition. One of our major contributions in this work is that, instead of using conventional Centroid Shape Configuration (CSC) which is not suitable to describe individual gait when body shape changes particularly due to change of walking speed, we propose a new descriptor named Higher-order derivative Shape Configuration (HSC) which can generate robust speed-invariant gait feature. From the first order to the higher order, derivative shape configuration contains gait shape information of different levels. Intuitively, the higher order of derivative is able to describe gait with shape change caused by the larger change of walking speed. Encouraging experimental results show that our proposed method is efficient for speed-invariant gait recognition and evidently outperforms other existing methods in the literatures.
机译:步行速度的变化被认为是阻碍可靠的步态识别的典型挑战。提出了一种基于Procrustes Shape Analysis(PSA)提取速度不变步态特征的新方法。 PSA的两个主要组成部分,即Procrustes平均形状(PMS)和Procrustes Distance(PD),被采用并进行了专门修改,以实现速度不变的步态识别。我们在这项工作中的主要贡献之一是,我们不使用传统的质心形状配置(CSC),该形状不适用于在身体形状特别是由于步行速度变化而改变时描述个人步态,我们建议使用一个新的描述符,称为高阶微分形状配置(HSC),可以生成鲁棒的速度不变步态特征。从一阶到更高阶,导数形状配置包含不同级别的步态形状信息。凭直觉,较高阶的导数能够描述步态变化较大的步态,而步态变化是由步行速度的较大变化引起的。令人鼓舞的实验结果表明,我们提出的方法对于速度不变的步态识别是有效的,并且明显优于文献中的其他现有方法。

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