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Pedestrian tracking for infrared image sequence based on trajectory manifold of spatio-temporal slice

机译:基于时空切片轨迹流形的红外图像序列行人跟踪

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摘要

The research of pedestrian tracking in infrared image sequences is a curial part of video surveillance. Considering the particular characteristics of the infrared image, such as low contrast, fuzzy edge and unknown noises interference, the study of infrared pedestrian tracking algorithm becomes a great challenge. Spatio-temporal slice method is effective due to considering both spatial and time scale. It can extract the trajectory of moving targets, reflecting the trajectory manifold variations of targets along the time, to provide ways to depict the regions of targets. However, traditional spatio-temporal based methods only consider the horizontal slice analysis and usually require a large amount of calculation time; this paper proposes a spatio-temporal tracking algorithm to infrared image sequences, using both horizontal and vertical multi-layer slices to obtain the integral trajectory manifold. The integral trajectory is analyzed to obtain the target boundary and position information, with which the target can be tracked in each frame. The experimental results show that the proposed method has a relatively high tracking accuracy with a fast computing speed. Moreover, it can perform effectively in different infrared image sequences with various motion modes by single pedestrian from OTCBVS/05 Terravic Motion IR Database.
机译:对红外图像序列中的行人跟踪的研究是视频监控的重要组成部分。考虑到红外图像的低对比度,模糊边缘和未知噪声干扰等特殊特征,对红外行人跟踪算法的研究成为一个巨大的挑战。时空切片法是有效的,因为同时考虑了空间和时间尺度。它可以提取运动目标的轨迹,反映目标随时间变化的轨迹变化,以提供描述目标区域的方法。但是,传统的基于时空的方法仅考虑水平切片分析,通常需要大量的计算时间。提出了一种红外图像序列的时空跟踪算法,利用水平和垂直多层切片获得积分轨迹流形。分析积分轨迹以获得目标边界和位置信息,利用该目标边界和位置信息可以在每个帧中跟踪目标。实验结果表明,该方法具有较高的跟踪精度和较快的计算速度。此外,它可以由OTCBVS / 05 Terravic Motion IR数据库中的单个行人以各种运动模式在不同的红外图像序列中有效执行。

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