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Gait recognition in the wild using shadow silhouettes

机译:使用阴影轮廓在野外进行步态识别

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Gait recognition systems allow identification of users relying on features acquired from their body movement while walking. This paper discusses the main factors affecting the gait features that can be acquired from a 2D video sequence, proposing a taxonomy to classify them across four dimensions. It also explores the possibility of obtaining users' gait features from the shadow silhouettes by proposing a novel gait recognition system. The system includes novel methods for: (i) shadow segmentation, (ii) walking direction identification, and (iii) shadow silhouette rectification.The shadow segmentation is performed by fitting a line through the feet positions of the user obtained from the gait texture image (GTI). The direction of the fitted line is then used to identify the walking direction of the user. Finally, the shadow silhouettes thus obtained are rectified to compensate for the distortions and deformations resulting from the acquisition setup, using the proposed four-point correspondence method. The paper additionally presents a new database, consisting of 21 users moving along two walking directions, to test the proposed gait recognition system. Results show that the performance of the proposed system is equivalent to that of the state-of-the-art in a constrained setting, but performing equivalently well in the wild, where most state-of-the-art methods fail. The results also highlight the advantages of using rectified shadow silhouettes over body silhouettes under certain conditions.
机译:步态识别系统可根据步行时从其身体运动中获取的特征来识别用户。本文讨论了影响可以从2D视频序列中获取的步态特征的主要因素,并提出了一种分类法,可以将其从四个维度进行分类。它还提出了一种新颖的步态识别系统,探索了从阴影轮廓中获取用户步态特征的可能性。该系统包括用于(i)阴影分割,(ii)步行方向识别和(iii)阴影轮廓校正的新颖方法。通过从穿过步态纹理图像获得的穿过用户脚部位置的直线进行拟合来执行阴影分割。 (GTI)。然后,将拟合线的方向用于识别用户的行走方向。最后,使用建议的四点对应方法,对由此获得的阴影轮廓进行校正,以补偿由采集设置引起的变形和变形。本文还提出了一个新的数据库,该数据库由21个沿着两个步行方向移动的用户组成,用于测试所提出的步态识别系统。结果表明,在受限环境下,所提出系统的性能与最新技术相当,但在野外却表现出色,因为大多数最新技术都无法实现。结果还突出了在某些条件下使用校正阴影轮廓优于身体轮廓的优势。

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