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Image models for flow field analysis, representation, and compression: A dynamical systems approach.

机译:用于流场分析,表示和压缩的图像模型:动态系统方法。

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摘要

Pattern models for analyzing, representing, and compressing experimental 2D fluid flow imagery are developed. The approach is to represent flow fields using the tools of dynamical systems theory. Complex flow fields are decomposed into simple components based on the observed critical point behavior. A critical point detector based on the vector field index is developed, and its performance is analyzed. The critical point behavior is modeled by the linear phase portrait, which is a compact representation specified by a 2 x 2 A matrix. The eigenvalues of A provide a symbolic descriptor, and this allows the qualitative behavior of the critical points to be classified into one of six canonical forms.; The global flow field behavior is represented using the linear phase portrait estimates as a basis. First, a linear superposition approach is considered, where the flow field is modeled using the tools of potential theory. This technique is appropriate for the representation of incompressible flows with negligible friction effects. A second approach is considered in which complex flows are modeled by nonlinear dynamical systems. A Taylor series model is assumed for the velocity components, and the model coefficients are computed by considering both local critical point and global flow field behavior. A merge and split procedure for complex flows is presented, in which patterns of neighboring critical point regions are combined and modeled.; The computed models are then employed to compress scalar flow images that exhibit little or gradual variation along the flow streamlines. The model serves as a guide for removing this redundancy, and compression ratios on the order of 100:1 are achieved. Finally, the compression of vector field data using orthogonal polynomials derived from the Taylor series model is considered. A critical point scheme and a block transform are presented. They are applied to velocity fields measured in particle image velocimetry experiments and generated by computer simulations, and compression ratios ranging from 15:1 to 100:1 are achieved.
机译:开发了用于分析,表示和压缩实验2D流体图像的模式模型。该方法是使用动力学系统理论的工具来表示流场。基于观察到的临界点行为,将复杂的流场分解为简单的组件。开发了基于矢量场指数的临界点检测器,并对其性能进行了分析。临界点行为由线性相位肖像建模,线性相位肖像是由2 x 2 A矩阵指定的紧凑表示。 A的特征值提供了一个符号描述符,这可以将临界点的定性行为分类为六种规范形式之一。使用线性相位肖像估计作为基础来表示整体流场行为。首先,考虑线性叠加方法,其中使用势能理论工具对流场进行建模。该技术适用于摩擦力可忽略的不可压缩流的表示。考虑第二种方法,其中通过非线性动力学系统对复杂的流进行建模。假设速度分量为泰勒级数模型,并且通过考虑局部临界点和整体流场行为来计算模型系数。提出了一种用于复杂流的合并和拆分过程,其中对相邻临界点区域的模式进行了组合和建模。然后,将所计算的模型用于压缩沿流线几乎没有或逐渐变化的标量流图像。该模型可作为消除此冗余的指南,并且压缩比达到100:1左右。最后,考虑使用从泰勒级数模型导出的正交多项式对矢量场数据进行压缩。提出了临界点方案和块变换。将它们应用于在粒子图像测速实验中测量的速度场,并通过计算机模拟生成速度场,并实现15:1至100:1的压缩比。

著录项

  • 作者

    Ford, Ralph Michael.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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