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Spatial and temporal features selection for low-altitude target detection

机译:低空目标检测的时空特征选择

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Target detection in plane position indicator (PPI) radar images aims at separating moving targets from complicated background image. Background subtraction is a powerful mechanism for such applications. Since there is still much clutter left in the foreground image after background subtraction, an optimal classification plane (OCP) should be constructed to distinguish targets from clutters. Due to the complexity and variability of the foreground and background images, the threshold value of each position of the OCP should be selected adaptively corresponding to each pixel of the foreground image. In this paper, a novel method is proposed to improve the classification results of the OCP with the spatial and temporal features from the PPI radar image sequence. Firstly, to select the thresholds in the OCP adaptively, a new formula is developed with the spatial features from two statistical models. The statistics from the foreground model reflect the aggregation degree of the concerned pixels, while those from the background model reflect their relative positions. Secondly, to further reduce the false alarm rate, a novel strategy based on the temporal features is incorporated to modify the OCP. Our method with the optimal parameter values is compared with the other successful techniques for target detection. Quantitative evaluations show that the proposed method provides better results. (C) 2014 Elsevier Masson SAS. All rights reserved.
机译:平面位置指示器(PPI)雷达图像中的目标检测旨在将运动目标与复杂的背景图像分开。背景扣除是此类应用程序的强大机制。由于背景相减后前景图像中还剩下很多杂波,因此应该构造一个最佳分类平面(OCP)来将目标与杂波区分开。由于前景和背景图像的复杂性和可变性,OCP的每个位置的阈值应根据前景图像的每个像素自适应地选择。本文提出了一种新的方法来提高PCP雷达图像序列具有时空特征的OCP分类结果。首先,为了自适应地选择OCP中的阈值,开发了一个具有两个统计模型的空间特征的新公式。来自前景模型的统计信息反映了相关像素的聚集度,而来自背景模型的统计信息反映了它们的相对位置。其次,为了进一步降低误报率,引入了一种基于时间特征的新颖策略来修改OCP。我们将具有最佳参数值的方法与其他成功的目标检测技术进行了比较。定量评估表明,所提出的方法提供了更好的结果。 (C)2014 Elsevier Masson SAS。版权所有。

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