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A robust fringe-adjusted joint transform correlator for efficient object detection

机译:坚固的条纹调整的关节变换相关器,用于有效的物体检测

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The fringe-adjusted joint transform correlation (FJTC) technique has been widely used for real-time optical pattern recognition applications. However, the classical FJTC technique suffers from target distortions due to noise, scale, rotation and illumination variations of the targets in input scenes. Several improvements of the FJTC have been proposed in the literature to accommodate these problems. Some popular techniques such as synthetic discriminant function (SDF) based FJTC was designed to alleviate the problems of scale and rotation variations of the target, whereas wavelet based FJTC has been found to yield better performance for noisy targets in the input scenes. While these techniques integrated with specific features to improve performance of the FJTC, a unified and synergistic approach to equip the FJTC with robust features is yet to be done. Thus, in this paper, a robust FJTC technique based on sequential filtering approach is proposed. The proposed method is developed in such a way that it is insensitive to rotation, scale, noise and illumination variations of the targets. Specifically, local phase (LP) features from monogenic signal is utilized to reduce the effect of background illumination thereby achieving illumination invariance. The SDF is implemented to achieve rotation and scale invariance, whereas the logarithmic fringe-adjusted filter (LFAF) is employed to reduce the noise effect. The proposed technique can be used as a real-time region-of-interest detector in wide-area surveillance for automatic object detection. The feasibility of the proposed technique has been tested on aerial imagery and has observed promising performance in detection accuracy.
机译:边缘调整的关节变换相关性(FJTC)技术已广泛用于实时光学模式识别应用。然而,由于输入场景中的目标的噪声,规模,旋转和照明变化,古典FJTC技术遭受目标失真。在文献中提出了若干改进FJTC以适应这些问题。诸如合成判别函数(SDF)的FJTC的一些流行技术旨在缓解目标的规模和旋转变化的问题,而基于小波的FJTC,已经发现在输入场景中产生更好的噪声目标性能。虽然这些技术与特定功能集成,以提高FJTC的性能,但尚未完成具有鲁棒特征的统一和协同方法以装备FJTC。因此,在本文中,提出了一种基于顺序滤波方法的鲁棒FJTC技术。所提出的方法是以这样的方式开发的方法,即它对目标的旋转,缩放,噪声和照明变化不敏感。具体地,来自单一的信号的局部相(LP)特征用于减少背景照明的效果,从而实现照明不变性。实施SDF以实现旋转和缩放不变性,而采用对数边缘调整过滤器(LFAF)以降低噪声效果。所提出的技术可以用作自动对象检测的广域广域监视中的实时兴趣区域的探测器。所提出的技术的可行性已经在空中图像上进行了测试,并且在检测精度观察到具有前景的性能。

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