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Log-polar mapping-based scale space tracking with adaptive target response

机译:基于对数极化映射的具有自适应目标响应的尺度空间跟踪

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Correlation filter-based tracking has exhibited impressive robustness and accuracy in recent years. Standard correlation filter-based trackers are restricted to translation estimation and equipped with fixed target response. These trackers produce an inferior performance when encountered with a significant scale variation or appearance change. We propose a log-polar mapping-based scale space tracker with an adaptive target response. This tracker transforms the scale variation of the target in the Cartesian space into a shift along the logarithmic axis in the log-polar space. A one-dimensional scale correlation filter is learned online to estimate the shift along the logarithmic axis. With the log-polar representation, scale estimation is achieved accurately without a multiresolution pyramid. To achieve an adaptive target response, a variance of the Gaussian function is computed from the response map and updated online with a learning rate parameter. Our log-polar mapping-based scale correlation filter and adaptive target response can be combined with any correlation filter-based trackers. In addition, the scale correlation filter can be extended to a two-dimensional correlation filter to achieve joint estimation of the scale variation and in-plane rotation. Experiments performed on an OTB50 benchmark demonstrate that our tracker achieves superior performance against state-of-the-art trackers. (C) 2017 SPIE and IS&T.
机译:近年来,基于相关滤波器的跟踪已显示出令人印象深刻的鲁棒性和准确性。基于标准相关过滤器的跟踪器仅限于翻译估计,并配备有固定的目标响应。当遇到明显的尺寸变化或外观变化时,这些跟踪器的性能会下降。我们提出了一种具有自适应目标响应的基于对数极化映射的尺度空间跟踪器。该跟踪器将笛卡尔空间中目标的比例变化转换为沿对数极空间中对数轴的位移。在线学习一维比例相关滤波器,以估计沿对数轴的位移。使用对数极坐标表示,无需多分辨率金字塔即可准确地实现比例估计。为了实现自适应目标响应,可从响应图中计算出高斯函数的方差,并使用学习率参数在线对其进行更新。我们的基于对数极化映射的比例相关滤波器和自适应目标响应可以与任何基于相关滤波器的跟踪器结合使用。另外,比例相关滤波器可以扩展为二维相关滤波器,以实现比例变化和面内旋转的联合估计。在OTB50基准上进行的实验表明,我们的跟踪器相对于最新的跟踪器具有出色的性能。 (C)2017 SPIE和IS&T。

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