3 June 2013 Discrete fractional Fourier transform computation by adaptive method
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Abstract
The continuous fractional Fourier transform (FRFT) can be interpreted as a rotation of a signal in the time-frequency plane and is a powerful tool for analyzing and processing nonstationary signals. Because of the importance of the FRFT, the discrete fractional Fourier transform (DFRFT) has recently become an important issue. We present the computation method for the DFRFT using the adaptive least-mean-square algorithm. First, the DFRFT computation scheme with single angle parameter of the signal block using the adaptive filter system is introduced. Second, considering the transform angles always change in practical applications, the DFRFT computation scheme with adjustable-angle parameter of the signal block using the adaptive filter system is presented. Then we construct two realization structures of the DFRFT computation with simultaneous multiple-angle parameters for each signal block. The proposed computation approaches have the inherent parallel structures, which make them suitable for efficient very large scale integration implementations.
© 2013 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2013/$25.00 © 2013 SPIE
Feng Zhang, Ran Tao, and Yue Wang "Discrete fractional Fourier transform computation by adaptive method," Optical Engineering 52(6), 068202 (3 June 2013). https://doi.org/10.1117/1.OE.52.6.068202
Published: 3 June 2013
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CITATIONS
Cited by 4 scholarly publications.
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KEYWORDS
Digital filtering

Fractional fourier transform

Electronic filtering

Computing systems

Signal processing

Optical engineering

Very large scale integration

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