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A Time-Frequency-Based Approach to Phase and Phase Synchrony Estimation

机译:基于时频的相位和相位同步估计方法

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摘要

Time-varying phase synchrony is an important bivariate measure that quantifies the dynamics between nonstationary signals and has been widely used in many applications including chaotic oscillators in physics and multichannel electroencephalography recordings in neuroscience. Current state-of-the-art in time-varying phase estimation uses either the Hilbert transform or the complex wavelet transform of the signals. Both of these methods have some major drawbacks such as the assumption that the signals are narrowband for the Hilbert transform and the nonuniform time-frequency resolution inherent to the wavelet analysis. In this paper, a new phase estimation method based on the Rihaczek distribution and Reduced Interference Rihaczek distribution belonging to Cohen's class is proposed. These distributions offer phase estimates with uniformly high time-frequency resolution which can be used for defining time and frequency dependent phase synchrony. Properties of the phase estimator and the corresponding phase synchrony measure are evaluated both analytically and through simulations showing the effectiveness of the new measures compared to existing methods.
机译:时变相位同步是一种重要的双变量测量方法,用于量化非平稳信号之间的动态,已广泛用于许多应用中,包括物理学中的混沌振荡器和神经科学中的多通道脑电图记录。时变相位估计中的最新技术使用信号的希尔伯特变换或复小波变换。这两种方法都有一些主要的缺点,例如,假设信号对于Hilbert变换来说是窄带的,并且小波分析固有的时间频率分辨率不均匀。本文提出了一种新的相位估计方法,该方法基于科恩类的Rihaczek分布和减少的干扰Rihaczek分布。这些分布提供具有统一的高时频分辨率的相位估计,可用于定义时间和频率相关的相位同步。相位估计器的属性和相应的相位同步度量通过分析和通过仿真来评估,这些仿真表明与现有方法相比,新度量的有效性。

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