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首页> 外文期刊>IEEE Transactions on Pattern Analysis and Machine Intelligence >Hypothesis testing: a framework for analyzing and optimizing Hough transform performance
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Hypothesis testing: a framework for analyzing and optimizing Hough transform performance

机译:假设检验:用于分析和优化霍夫变换性能的框架

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In this paper a formal, quantitative approach to designing optimum Hough transform (HT) algorithms is proposed. This approach takes the view that a HT is a hypothesis testing method. Each sample in the HT array implements a test to determine whether a curve with the given parameters fits the edge point data. This view allows the performance of HT algorithms to be quantified. The power function, which gives the probability of rejection as a function of the underlying parametric distribution of data points, is shown to be the fundamentally important characteristic of HT behaviour. Attempting to make the power function narrow is a formal approach to optimizing HT performance. To illustrate how this framework is useful the particular problem of line detection is discussed in detail. It is shown that the hypothesis testing framework leads to a redefinition of the HT in which the values are a measure of the distribution of points around a curve rather than the number of points on a curve. This change dramatically improves the sensitivity of the method to small structures. The solution to many HT design problems can be posed within the framework, including optimal quantizations and optimum sampling of the parameter space. In this paper the authors consider the design of optimum I-D filters, which can be used to sharpen the peak structure in parameter space. Results on several real images illustrate the improvements obtained.
机译:本文提出了一种形式化,定量的方法来设计最佳霍夫变换(HT)算法。这种方法认为HT是一种假设检验方法。 HT数组中的每个样本都执行测试以确定具有给定参数的曲线是否适合边缘点数据。该视图可以量化HT算法的性能。幂函数表示拒绝行为的概率是数据点的基础参数分布的函数,它被证明是HT行为的根本重要特征。试图缩小幂函数是优化HT性能的正式方法。为了说明该框架如何有用,将详细讨论线路检测的特定问题。结果表明,假设检验框架导致了HT的重新定义,其中HT值是曲线周围点分布的度量,而不是曲线上点的数量。这种变化极大地提高了该方法对小型结构的敏感性。可以在框架内提出许多HT设计问题的解决方案,包括最佳量化和参数空间的最佳采样。在本文中,作者考虑了最佳I-D滤波器的设计,该滤波器可用于增强参数空间中的峰结构。在几个真实图像上的结果说明了所获得的改进。

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