Efficient Optimal Kernel Placement for Reliable Visual Tracking

Zhimin Fan, Ming Yang, Ying Wu, G. Hua, Ting Yu
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引用次数: 38

Abstract

This paper describes a novel approach to optimal kernel placement in kernel-based tracking. If kernels are placed at arbitrary places, kernel-based methods are likely to be trapped in ill-conditioned locations, which prevents the reliable recovery of the motion parameters and jeopardizes the tracking performance. The theoretical analysis presented in this paper indicates that the optimal kernel placement can be evaluated based on a closed-form criterion, and achieved efficiently by a novel gradient-based algorithm. Based on that, new methods for temporal-stable multiple kernel placement and scale-invariant kernel placement are proposed. These new theoretical results and new algorithms greatly advance the study of kernel-based tracking in both theory and practice. Extensive real-time experimental results demonstrate the improved tracking reliability.
有效的最优内核放置可靠的视觉跟踪
本文描述了一种基于核跟踪的优化核位置的新方法。如果将核放置在任意位置,基于核的方法很可能会陷入病态位置,从而影响运动参数的可靠恢复,影响跟踪性能。本文的理论分析表明,核的最优位置可以基于封闭准则进行评估,并通过一种新的基于梯度的算法有效地实现。在此基础上,提出了时间稳定多核放置和尺度不变核放置的新方法。这些新的理论成果和新的算法在理论和实践上都极大地推动了基于核跟踪的研究。大量的实时实验结果表明,该方法提高了跟踪可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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