Conference Article

·2010

A signal-adaptive discrete evolutionary transform

Sultan Aldırmaz YTU , Lütfiye Durak-Ata YTU , Aydın Akan , Luis F. Chaparro

European Signal Processing Conference

Abstract

The discrete evolutionary transform is applied to signals in a blind-way, i.e., without using any parameters to characterize the signal. For this reason, it is not optimal and needs an improvement by using some information about the signal. In this paper, we propose an improvement for the discrete evolutionary transform and redefine the generalized time-bandwidth product optimal shorttime Fourier transform as a special case of the discrete evolutionary transform. The optimized kernel function of the shorttime Fourier transform is determined according to the instantaneous frequency of linear FM signals-type signals. Even in case of quadratic FM signals, the resulting localization of the time-frequency representations improves remarkably. The performance of this adaptive discrete evolutionary transform is presented on signals with time-varying instantaneous frequencies.

Keywords

Discrete Fourier transform (general) Non-uniform discrete Fourier transform Fourier transform Fractional Fourier transform Mathematics Discrete frequency domain Algorithm Discrete Hartley transform Computer science Constant Q transform Kernel (algebra) Time–frequency analysis Short-time Fourier transform Frequency domain Mathematical analysis Fourier analysis Telecommunications Discrete mathematics

Subject Areas

Chaos control and synchronization ·Statistical and Nonlinear Physics ·Physical Sciences
Neural Networks and Applications ·Artificial Intelligence ·Physical Sciences
Metaheuristic Optimization Algorithms Research ·Artificial Intelligence ·Physical Sciences

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