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Time-frequency representation of a signal through non-stationary multipath fading channel

机译:通过非稳定性多径衰落通道的信号的时频表示

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Spectral analysis is only applicable to stationary signals and most of the real signals in many practical applications are non-stationary. Time-frequency methods are applied to analyze non-stationary signals and this paper presents different time-frequency methods to analyze a modulated random signal through a multi-path fading channel with emphasis on time-varying power spectra. Short-time Fourier transform (STFT) divides the full time interval signal into a number of small intervals and is not useful for analyzing signal to determine frequency contents of a time varying voltage spectra. Wigner-Ville distribution (WVD) is the most popular time-frequency energy distributions to develop time-frequency plane for estimation and detection of non-stationary process. The objective of this paper is to analyze time-frequency relationship of a non-stationary amplitude varying fading channel. In this paper, STFT and WVD are applied to the time varying non-stationary multipath fading channel to analyze time-frequency contents. The result shows that WVD provides better time-frequency relationship than that obtained by Fourier transform, and the analysis procedure will be used in future to analyze time-frequency relationship of amplitude varying non-stationary channel using Wavelet transform.
机译:光谱分析仅适用于静止信号,许多实际应用中的大多数实际信号都是非静止的。应用时间频率方法来分析非静止信号,本文呈现不同的时频方法,以通过多路径衰落通道分析调制随机信号,重点是时变功率谱。短时傅里叶变换(STFT)将全时间间隔信号分成多个小间隔,并且不用于分析信号以确定时间变化电压谱的频率内容。 Wigner-Ville分布(WVD)是最流行的时频能量分布,用于制定时频面,以估计和检测非静止过程。本文的目的是分析非静止幅度变化衰落通道的时频关系。在本文中,STFT和WVD应用于时变非静止多径衰落信道以分析时间频率内容。结果表明,WVD提供了比通过傅里叶变换所获得的更好的时频关系,并且将来将使用分析程序来利用小波变换分析幅度变化的非静止信道的时频关系。

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