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Time-frequency formulation, design, and implementation of time-varying optimal filters for signal estimation

机译:用于信号估计的时变最优滤波器的时频公式化,设计和实现

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摘要

This paper presents a time-frequency framework for optimal linear filters (signal estimators) in nonstationary environments. We develop time-frequency formulations for the optimal linear filter (time-varying Wiener filter) and the optimal linear time-varying filter under a projection side constraint. These time-frequency formulations extend the simple and intuitive spectral representations that are valid in the stationary case to the practically important case of underspread nonstationary processes. Furthermore, we propose an approximate time-frequency design of both optimal filters, and we present bounds that show that for underspread processes, the time-frequency designed filters are nearly optimal. We also introduce extended filter design schemes using a weighted error criterion, and we discuss an efficient time-frequency implementation of optimal filters using multiwindow short-time Fourier transforms. Our theoretical results are illustrated by numerical simulations.
机译:本文提出了一种用于非平稳环境中的最佳线性滤波器(信号估计器)的时频框架。我们针对投影侧约束条件下的最优线性滤波器(时变维纳滤波器)和最优线性时变滤波器开发了时频公式。这些时频公式将简单直观的频谱表示法扩展到了平稳的情况,而这种情况在平稳情况下是有效的,而在实际情况中,这种情况是未扩展的非平稳过程。此外,我们提出了两个最优滤波器的近似时频设计,并给出了边界,表明对于欠扩展过程,时频设计的滤波器几乎是最优的。我们还介绍了使用加权误差准则的扩展滤波器设计方案,并讨论了使用多窗口短时傅立叶变换的最优滤波器的高效时频实现。数值模拟说明了我们的理论结果。

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