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Re-detection object tracking algorithm in the cyber physical system

机译:网络物理系统中的重新检测对象跟踪算法

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摘要

Cyber physical system (CPS) is a complex system combining computation, network and physics; object tracking is an important application of CPS. To solve the problem that the traditional kernel correlation filtering tracking algorithm cannot recover the lost object, the authors propose a re-detection object tracking algorithm. The proposed algorithm mainly designs a new adaptive detection criterion. By comparing the value of detection criterion and the value of the experience threshold, it can be judged whether the current target is lost or not. When the object tracking fails, the proposed method can generate target candidate boxes by using the edge boxes algorithm and select the best target location by applying the non-maximum suppression and the Euclidean metric methods. In addition, a fast multi-scale estimation method and an adaptive updating method are added to the tracking procedure to further improve the overall performance of the algorithm. Experimental results show that the proposed approach has a good performance in terms of precision and success rates.
机译:网络物理系统(CPS)是一个复杂的系统,组合计算,网络和物理学;对象跟踪是CPS的重要应用。为了解决传统的内核相关滤波跟踪算法无法恢复丢失对象的问题,提出了一种重新检测对象跟踪算法。该算法主要设计新的自适应检测标准。通过比较检测标准的值和体验阈值的值,可以判断当前目标是否丢失。当对象跟踪失败时,所提出的方法可以通过使用边缘盒算法来生成目标候选框,并通过应用非最大抑制和欧几里德公制方法选择最佳目标位置。另外,快速多尺度估计方法和自适应更新方法被添加到跟踪过程中,以进一步提高算法的整体性能。实验结果表明,该拟议的方法在精确和成功率方面具有良好的表现。

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