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Optimal tradeoff circular harmonic function correlation filter methods providing controlled in-plane rotation response

机译:最优折衷圆谐波函数相关滤波方法,提供受控的面内旋转响应

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摘要

Correlation methods are becoming increasingly attractive tools for image recognition and location. This renewed interest in correlation methods is spurred by the availability of high-speed image processors and the emergence of correlation filter designs that can optimize relevant figures of merit. In this paper, a new correlation filter design method is presented that allows one to optimally tradeoff among potentially conflicting correlation output performance criteria while achieving desired correlation peak value behavior in response to in-plane rotation of input images. Such controlled in-plane rotation response is useful in image analysis and pattern recognition applications where the sensor follows a pre-arranged trajectory while imaging an object. Since this new correlation filter design is based on circular harmonic function (CHF) theory, we refer to the resulting filters as optimal tradeoff circular harmonic function (OTCHF) filters. Underlying theory, OTCHF filter design method, and illustrative numerical results are presented.
机译:相关方法正变得越来越有吸引力,用于图像识别和定位。高速图像处理器的可用性以及可以优化相关品质因数的相关滤波器设计的出现激发了人们对相关方法的新兴趣。在本文中,提出了一种新的相关滤波器设计方法,该方法允许在潜在冲突的相关输出性能标准之间进行最佳权衡,同时实现响应于输入图像的面内旋转的所需相关峰值行为。这种受控的平面内旋转响应在图像分析和模式识别应用中非常有用,在这些应用中,传感器在对物体成像时会遵循预定的轨迹。由于这种新的相关滤波器设计基于圆谐波函数(CHF)理论,因此我们将所得滤波器称为最佳折衷圆谐波函数(OTCHF)滤波器。提出了基础理论,OTCHF滤波器设计方法以及说明性的数值结果。

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