Least squares deconvolution in wavelet domain for 1/f driven LTI systems

M. Izzetoglu, Tayfun Akgül, B. Onaral, N. Bilgutay
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引用次数: 1

Abstract

In this paper we propose a least squares deconvolution method in the wavelet domain for linear time-invariant (LTI) systems with 1/f type input signals. We model the output of the system as convolution of the impulse response and the input signal, which exhibits 1/f type spectral behavior. Our aim in solving the deconvolution problem is to estimate a filter which approximates the inverse of the impulse response, so that by applying this filter to the output data we can estimate the input signal. In order to achieve this objective, we use the wavelet transform and its properties for 1/f signals, where the logarithm of the variance of the wavelet coefficients in each stage progresses linearly. We define an error criterion in the wavelet domain whose minimization yields the optimum inverse filter. We present the error minimization algorithm and the simulation results.
1/f驱动LTI系统的小波域最小二乘反卷积
本文针对输入信号为1/f型的线性时不变系统,提出了一种小波域的最小二乘反卷积方法。我们将系统的输出建模为脉冲响应与输入信号的卷积,其表现为1/f型谱行为。我们解决反卷积问题的目的是估计一个近似脉冲响应逆的滤波器,这样通过将该滤波器应用于输出数据,我们可以估计输入信号。为了实现这一目标,我们对1/f信号使用小波变换及其性质,其中每个阶段小波系数方差的对数线性发展。我们在小波域定义了一个误差准则,它的最小化产生最优的逆滤波器。给出了误差最小化算法和仿真结果。
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