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Multiscale AM-FM Demodulation and Image Reconstruction Methods With Improved Accuracy

机译:精度提高的多尺度AM-FM解调和图像重建方法

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摘要

We develop new multiscale amplitude-modulation frequency-modulation (AM-FM) demodulation methods for image processing. The approach is based on three basic ideas: (i) AM-FM demodulation using a new multiscale filterbank, (ii) new, accurate methods for instantaneous frequency (IF) estimation, and (iii) multiscale least squares AM-FM reconstructions. In particular, we introduce a variable-spacing local linear phase (VS-LLP) method for improved instantaneous frequency (IF) estimation and compare it to an extended quasilocal method and the quasi-eigen function approximation (QEA). It turns out that the new VS-LLP method is a generalization of the QEA method where we choose the best integer spacing between the samples to adapt as a function of frequency. We also introduce a new quasi-local method (QLM) for IF and IA estimation and discuss some of its advantages and limitations. The new IF estimation methods lead to significantly improved estimates. We present different multiscale decompositions to show that the proposed methods can be used to reconstruct and analyze general images.
机译:我们为图像处理开发了新的多尺度幅度调制调频(AM-FM)解调方法。该方法基于三个基本思想:(i)使用新的多尺度滤波器组进行AM-FM解调;(ii)用于瞬时频率(IF)估计的新的准确方法;以及(iii)多尺度最小二乘AM-FM重建。特别是,我们引入了一种可变间隔局部线性相位(VS-LLP)方法来改进瞬时频率(IF)估计,并将其与扩展的拟局部方法和拟本征函数近似(QEA)进行比较。事实证明,新的VS-LLP方法是QEA方法的推广,在该方法中,我们选择样本之间的最佳整数间隔以适应频率的函数。我们还介绍了一种用于IF和IA估计的新的准局部方法(QLM),并讨论了其一些优点和局限性。新的IF估计方法可显着改善估计值。我们提出了不同的多尺度分解方法,以表明所提出的方法可用于重建和分析一般图像。

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