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Modelling of imaged ellipse intensity profiles using Euclidean geometry

机译:使用欧几里得几何学对成像的椭圆强度轮廓进行建模

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摘要

To model the evolution in intensity of an ellipse image along randomly oriented profiles, this paper starts with the derivation of an analytical solution involving infinite summations of products of Hermite polynomials which is consequently argued to be impractical. Generation of profiles adopting Fourier analyses hamper the extraction of arbitrarily located intensity distributions as a direct result of equidistant spatial sampling and an alternative procedure is therefore presented to calculate the sought-for intensity at isolated spatial locations. The algorithm introduced is based on the overlap area between the ellipse and concentric circles which can be performed using basic trigonometric properties. The simplicity of the proposed method allows, contrary to Fourier-based analyses, the modelling of intensity profiles with high resolution while demanding minimal computational memory. The proficiency of the method is demonstrated numerically and its generality and applicability to real images in terms of motion-induced image blurring and digitisation is discussed.
机译:为了模拟椭圆图像沿随机取向的轮廓的强度演化,本文从推导涉及无限次求和的Hermite多项式乘积的解析解的推导开始,因此认为这是不切实际的。采用傅立叶分析的剖面图的生成妨碍了等距空间采样的直接结果是提取任意定位的强度分布,因此提出了一种替代方法来计算在孤立的空间位置处的所需强度。引入的算法基于椭圆和同心圆之间的重叠区域,可以使用基本的三角学属性执行该重叠区域。与基于傅立叶的分析相反,所提出方法的简单性允许以高分辨率对强度分布进行建模,同时需要最少的计算内存。数值论证了该方法的有效性,并从运动引起的图像模糊和数字化的角度讨论了该方法的普遍性和对实际图像的适用性。

著录项

  • 作者

    Theunissen, Raf;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:33:42

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