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Extended Zernike invariants backed with complex-valued integral images for detection tasks

机译:扩展的Zernike不变性以复位值的积分图像备份,用于检测任务

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We consider the problem of computationally fast extraction of rotationally invariant features for object detection procedures based on the sliding window. The central point of interest are Zernike moments (ZMs), which can serve to generate rotationally invariant features. However, the definition-based computations of ZMs are linear with respect to the number of pixels in the image window, and therefore are too slow to be applied directly. The method, we have proposed, computes each feature in constant-time — O(1), and thereby does not depend on the number of pixels. This is owed to a suitable construction of complex-valued integral images that we perform prior to the detection procedure. The approach can be referred to extraction of well known Haar-like features (HFs), but our actual computations are more intricate, and obviously the HFs are not rotationally invariant. This paper constitutes a follow-up study and a refinement of our former research. We enrich our initial ideas by proposing anextendedspace of Zernike invariants backed with integral images. This feature space includes not only the moduli of Zernike moments but also real and imaginary parts of suitablemoment products.We demonstrate the rotational invariance property of these products and provide all necessary algorithmic details, such as: a suitable indexation scheme, feature extraction procedures, and feature counts. Finally, we present a road sign detection experiment confirming that the extended space of features contributes to more accurate detection of objects regardless of their rotation.
机译:我们考虑基于滑动窗口的对象检测过程的旋转不变特征的计算快速提取的问题。中心的兴趣点是Zernike时刻(ZMS),它可以用于产生旋转不变的功能。然而,基于定义的ZMS计算对于图像窗口中的像素数是线性的,因此太慢被直接应用。我们提出的方法计算恒定时间O(1)中的每个特征,从而不依赖于像素的数量。这符合我们在检测程序之前执行的复值积分图像的合适构造。该方法可以参考众所周知的哈尔样特征(HFS)的提取,但我们的实际计算更复杂,显然HFS不旋转不变。本文构成了我们前研究的后续研究和改进。我们通过提出用积分图像支持的Zernike不变性的AnextendedSpace来丰富我们的初始想法。此特征空间不仅包括Zernike矩的模态,而且包括SuitableMoMent产品的真实和虚部.WE展示了这些产品的旋转不变性属性,并提供了所有必要的算法细节,例如:一种合适的指数方案,特征提取程序,以及特征提取程序,以及特征计数。最后,我们提出了一种道路标志检测实验,证实了延长的功能空间有助于更准确地检测物体,无论其旋转如何。

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