首页> 外文期刊>Visualization and Computer Graphics, IEEE Transactions on >Admissible Diffusion Wavelets and Their Applications in Space-Frequency Processing
【24h】

Admissible Diffusion Wavelets and Their Applications in Space-Frequency Processing

机译:容许扩散小波及其在空频处理中的应用

获取原文
获取原文并翻译 | 示例

摘要

As signal processing tools, diffusion wavelets and biorthogonal diffusion wavelets have been propelled by recent research in mathematics. They employ diffusion as a smoothing and scaling process to empower multiscale analysis. However, their applications in graphics and visualization are overshadowed by nonadmissible wavelets and their expensive computation. In this paper, our motivation is to broaden the application scope to space-frequency processing of shape geometry and scalar fields. We propose the admissible diffusion wavelets (ADW) on meshed surfaces and point clouds. The ADW are constructed in a bottom-up manner that starts from a local operator in a high frequency, and dilates by its dyadic powers to low frequencies. By relieving the orthogonality and enforcing normalization, the wavelets are locally supported and admissible, hence facilitating data analysis and geometry processing. We define the novel rapid reconstruction, which recovers the signal from multiple bands of high frequencies and a low-frequency base in full resolution. It enables operations localized in both space and frequency by manipulating wavelet coefficients through space-frequency filters. This paper aims to build a common theoretic foundation for a host of applications, including saliency visualization, multiscale feature extraction, spectral geometry processing, etc.
机译:作为信号处理工具,最近的数学研究推动了扩散小波和双正交扩散小波。他们采用扩散作为平滑和缩放过程,以实现多尺度分析。但是,它们在图形和可视化中的应用被不允许的小波及其昂贵的计算所遮盖。在本文中,我们的动机是将应用范围扩展到形状几何和标量场的空频处理。我们提出了在网格表面和点云上的可允许扩散小波(ADW)。 ADW以自下而上的方式构造,该方式从本地运营商以高频开始,并通过其二进位功率扩展到低频。通过消除正交性并加强归一化,可以局部支持和允许小波,从而有助于数据分析和几何处理。我们定义了一种新颖的快速重建技术,该技术可以全分辨率从高频和低频多个频段恢复信号。通过通过空间频率滤波器处理小波系数,它可以实现空间和频率局部化的运算。本文旨在为许多应用程序建立通用的理论基础,包括显着性可视化,多尺度特征提取,光谱几何处理等。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号