Design of Complex Wavelet Base in Analog Domain

Lina Ma, Wenshan Zhao
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Abstract

This paper proposes a method of pole-shared approximation for complex wavelet bases using hybrid genetic algorithm. The approximation process mainly includes the rational fraction approximation of the Gaussian envelope and the Laplace transform of the product of the approximation function and the sine or cosine function. According to the principle of pole-shared approximation, the mathematical approximation model is constructed first. And then, the complex Gabor wavelet is taken as an example to illustrate the approximation process of Gaussian envelope using hybrid genetic algorithm. The experimental results show that the approximation accuracy of the complex wavelet base is relatively high, and the approximation functions of the real part and the imaginary part have the same poles.
模拟域复小波基的设计
提出了一种基于混合遗传算法的复小波基极点共享逼近方法。逼近过程主要包括高斯包络的有理分式逼近和逼近函数与正弦或余弦函数乘积的拉普拉斯变换。根据极点共享近似原理,首先建立了数学近似模型。然后以复Gabor小波为例,说明了混合遗传算法对高斯包络线的逼近过程。实验结果表明,复小波基的逼近精度较高,且实部和虚部的逼近函数具有相同的极点。
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