Analysis of adaptive short-time Fourier transform-based synchrosqueezing transform

Author:

Cai Haiyan1,Jiang Qingtang1,Li Lin1,Suter Bruce W.2

Affiliation:

1. Department of Mathematics and Computer Science, University of Missouri-St. Louis, St. Louis, MO 63121, USA

2. The Air Force Research Laboratory, AFRL/RITB, Rome, NY 13441, USA

Abstract

Recently, the study of modeling a non-stationary signal as a superposition of amplitude and frequency-modulated Fourier-like oscillatory modes has been a very active research area. The synchrosqueezing transform (SST) is a powerful method for instantaneous frequency estimation and component separation of non-stationary multicomponent signals. The short-time Fourier transform-based SST (FSST) reassigns the frequency variable to sharpen the time-frequency representation and to separate the components of a multicomponent non-stationary signal. Very recently the FSST with a time-varying parameter, called the adaptive FSST, was introduced. The simulation experiments show that the adaptive FSST is very promising in instantaneous frequency estimation of the component of a multicomponent signal, and in accurate component recovery. However, the theoretical analysis of the adaptive FSST has not been carried out. In this paper, we study the theoretical analysis of the adaptive FSST and obtain the error bounds for the instantaneous frequency estimation and component recovery with the adaptive FSST and the second-order adaptive FSST.

Funder

the 2018 Air Force Visiting Faculty Research Program (VFRP) and by Simons Foundation

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Analysis

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