Abstract
In this paper, an efficient short-time Fourier analysis method for the quasi-periodic signals is proposed via an optimal fixed-lag finite impulse response (FIR) smoother approach using a receding horizon scheme. In order to deal with time-varying Fourier coefficients (FCs) of quasi-periodic signals, a state space model including FCs as state variables is augmented with the variants of FCs. Through an optimal fixed-lag FIR smoother, FCs and their increments are estimated simultaneously and combined to produce final estimates. A lag size of the optimal fixed-lag FIR smoother is chosen to minimize the estimation error. Since the proposed estimation scheme carries out the correction process with the estimated variants of FCs, it is highly probable that the smaller estimation error is achieved compared with existing approaches not making use of such a process. It is shown through numerical simulation that the proposed scheme has better tracking ability for estimating time-varying FCs compared with existing ones.
Original language | English |
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Pages (from-to) | 378-384 |
Number of pages | 7 |
Journal | Journal of Electrical Engineering and Technology |
Volume | 12 |
Issue number | 1 |
DOIs | |
State | Published - 2017 |
Keywords
- Fixed-lag FIR smoother
- Fourier analysis
- Optimal estimation
- Quasi-periodic signal
- Receding horizon
- Timevarying fourier coefficients