Classification and local error estimation of interpolation and derivative filters for volume rendering

Torsten Möller, R. Machiraju, K. Mueller, R. Yagel
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引用次数: 39

Abstract

We describe a new method for analyzing, classifying, and evaluating filters, which can be applied to interpolation filters, and derivative filters. Our analysis is based on the Taylor series expansion of a convolution sum and some assumptions on the behavior of the data function. As a result of our analysis, we derive the need and the method for normalization of derivative filter coefficients. As an example, we demonstrate the utilization of our methods to the analysis of the class of cardinal cubic filters. Since our technique is not restricted to interpolation filters, we can show that the Catmull-Rom spline filter and its derivative are the most accurate reconstruction and derivative filter among this class of filters. We show that the derivative filter has a much higher impact on the rendered volume than the interpolation filter. We demonstrate the use of these optimal filters for accurate interpolation and gradient estimation in volume rendering.
体绘制中插值与导数滤波器的分类与局部误差估计
我们描述了一种新的分析、分类和评价滤波器的方法,它可以应用于插值滤波器和导数滤波器。我们的分析是基于卷积和的泰勒级数展开和对数据函数行为的一些假设。作为分析的结果,我们推导了导数滤波器系数归一化的必要性和方法。作为一个例子,我们展示了我们的方法在分析基数三次滤波器类中的应用。由于我们的技术不局限于插值滤波器,我们可以证明Catmull-Rom样条滤波器及其导数是这类滤波器中最精确的重构和导数滤波器。我们表明,导数滤波器比插值滤波器对渲染体积的影响要大得多。我们演示了在体绘制中使用这些最优滤波器进行精确的插值和梯度估计。
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