A modification of the discrete polynomial transform
S Golden, B Friedlander - IEEE transactions on signal …, 1998 - ieeexplore.ieee.org
The discrete polynomial transform (DPT) has been introduced as a computationally efficient
algorithm for estimating the phase parameters of constant-amplitude polynomial phase …
algorithm for estimating the phase parameters of constant-amplitude polynomial phase …
The discrete polynomial-phase transform
S Peleg, B Friedlander - IEEE Transactions on Signal …, 1995 - ieeexplore.ieee.org
The discrete polynomial-phase transform (DPT) is a new tool for analyzing constant-
amplitude polynomial-phase signals. The main properties of the DPT are its ability to identify …
amplitude polynomial-phase signals. The main properties of the DPT are its ability to identify …
An iterative algorithm for estimating the parameters of polynomial phase signals
PJ O'Shea - Fourth Interational Symposium on Signal Processing …, 1996 - eprints.qut.edu.au
The" Polynomial Phase transform (PPT)", was presented in [l] as a tool for the estimation of
the parameters of constant amplitude polynomial phase signals. Extensions of the algorithm …
the parameters of constant amplitude polynomial phase signals. Extensions of the algorithm …
The discrete polynomial transform (DPT), its properties and applications
S Peleg, B Porat, B Friedlander - [1991] Conference Record of …, 1991 - ieeexplore.ieee.org
The discrete polynomial transform (DPT) is a new tool for analyzing constant-amplitude
continuous-phase signals. It is based on modeling the signal phase by a polynomial function …
continuous-phase signals. It is based on modeling the signal phase by a polynomial function …
Parametric signal analysis using the polynomial phase transform
B Friedlander - … ] IEEE Signal Processing Workshop on Higher …, 1993 - ieeexplore.ieee.org
Presents a tutorial discussion of the polynomial phase transform (PPT) and its application to
estimating the parameters of complex signals with continuous phase and slowly varying …
estimating the parameters of complex signals with continuous phase and slowly varying …
Fast computation for third-order polynomial time frequency transforms
G Bi, Y Wei - Electronics Letters, 2004 - IET
A fast algorithm is presented for the computation of the third-order polynomial time frequency
transform, which is needed by the maximum likelihood method to estimate the phase …
transform, which is needed by the maximum likelihood method to estimate the phase …
A technique for estimating the parameters of multiple polynomial phase signals
S Peleg, B Friedlander - [1992] Proceedings of the IEEE-SP …, 1992 - ieeexplore.ieee.org
An iterative algorithm for estimating the parameters of multiple superimposed polynomial
phase signals is presented. The algorithm is based on the ability of the discrete polynomial …
phase signals is presented. The algorithm is based on the ability of the discrete polynomial …
Non-uniform sampled cubic phase function
M Simeunović, I Djurović - Signal Processing, 2014 - Elsevier
Parameter estimation of polynomial phase signals (PPSs) based on the cubic phase
function (CPF) and its extensions cannot be performed by using the fast Fourier transform …
function (CPF) and its extensions cannot be performed by using the fast Fourier transform …
Fast algorithms for polynomial time frequency transform
Y Wei, G Bi - Signal processing, 2007 - Elsevier
The computation of polynomial time frequency transform (PTFT) is required for the maximum
likelihood method to estimate the phase parameters of the polynomial-phase signals …
likelihood method to estimate the phase parameters of the polynomial-phase signals …
Split-radix algorithms for arbitrary order of polynomial time frequency transforms
G Bi, Y Wei - IEEE transactions on signal processing, 2006 - ieeexplore.ieee.org
The polynomial time frequency transform is one of important tools for estimating the
coefficients of the polynomial-phase signals (PPSs) with the maximum likelihood method …
coefficients of the polynomial-phase signals (PPSs) with the maximum likelihood method …