In this work, we further extend the recently developed adaptive data analysis method, the Sparse Time-Frequency Representation (STFR) method. This method is based on the assumption that many physical signals inherently contain AM-FM representations. We propose a sparse optimization method to extract the AM-FM representations of such signals. We prove the convergence of the method for periodic signals under certain assumptions and provide practical algorithms specifically for the non-periodic STFR, which extends the method to tackle problems that former STFR methods could not handle, including stability to noise and non-periodic data analysis. This is a significant improvement since many adaptive and non-adaptive signal processing methods ar...
In this paper, we propose a time-frequency analysis method to obtain instantaneous frequencies and t...
Dedicated to George Papanicolaou on the occasion of his 70th birthday Abstract. In this paper, we es...
There are many sources of waveforms or signals existing around us. They can be natural phenomena suc...
In this paper, we consider multiple signals sharing same instantaneous frequencies. This kind of dat...
In this paper, we consider multiple signals sharing same instantaneous frequencies. This kind of dat...
Analysis and extraction of strongly frequency modulated signals have been a challenging problem for ...
Analysis and extraction of strongly frequency modulated signals have been a challenging problem for ...
We introduce a new adaptive method for analyzing nonlinear and nonstationary data. This method is in...
We introduce a new adaptive method for analyzing nonlinear and nonstationary data. This method is in...
In this paper, we introduce a new adaptive data analysis method to study trend and instantaneous fre...
In this paper, we introduce a new adaptive data analysis method to study trend and instantaneous fre...
International audienceIn the case of multicomponent signals with amplitude and frequency modulations...
Most of the human-made and physical signals have nonstationary spectra that evolve rapidly with time...
In this paper, we propose a time-frequency analysis method to obtain instantaneous frequencies and t...
In this paper, we propose a time-frequency analysis method to obtain instantaneous frequencies and t...
In this paper, we propose a time-frequency analysis method to obtain instantaneous frequencies and t...
Dedicated to George Papanicolaou on the occasion of his 70th birthday Abstract. In this paper, we es...
There are many sources of waveforms or signals existing around us. They can be natural phenomena suc...
In this paper, we consider multiple signals sharing same instantaneous frequencies. This kind of dat...
In this paper, we consider multiple signals sharing same instantaneous frequencies. This kind of dat...
Analysis and extraction of strongly frequency modulated signals have been a challenging problem for ...
Analysis and extraction of strongly frequency modulated signals have been a challenging problem for ...
We introduce a new adaptive method for analyzing nonlinear and nonstationary data. This method is in...
We introduce a new adaptive method for analyzing nonlinear and nonstationary data. This method is in...
In this paper, we introduce a new adaptive data analysis method to study trend and instantaneous fre...
In this paper, we introduce a new adaptive data analysis method to study trend and instantaneous fre...
International audienceIn the case of multicomponent signals with amplitude and frequency modulations...
Most of the human-made and physical signals have nonstationary spectra that evolve rapidly with time...
In this paper, we propose a time-frequency analysis method to obtain instantaneous frequencies and t...
In this paper, we propose a time-frequency analysis method to obtain instantaneous frequencies and t...
In this paper, we propose a time-frequency analysis method to obtain instantaneous frequencies and t...
Dedicated to George Papanicolaou on the occasion of his 70th birthday Abstract. In this paper, we es...
There are many sources of waveforms or signals existing around us. They can be natural phenomena suc...