TY - JOUR
T1 - Composite signal detection using multisynchrosqueezing wavelet transform
AU - Chen, Xu
AU - Zhang, Zhousuo
AU - Yang, Wenzhan
N1 - Publisher Copyright:
© 2024 Elsevier Inc.
PY - 2024/6
Y1 - 2024/6
N2 - It is important to study recognition and recovery of effective signal components for information extraction of composite signals. However, owing to the limitation of time-frequency (TF) resolution, composite signal detection has always been a difficult problem, particularly for signals with crossover frequencies, namely crossover signals. This study proposes a new approach to solve signal estimation based on optimization of TF distribution. Firstly, based on the theory of multisynchrosqueezing transform (MSST), a high-order multisynchrosqueezing wavelet transform (HMSWT) that can accurately estimate the nonlinear instantaneous frequency (IF) is studied. On this basis, wavelet coefficient reassignment is extended to two dimensions by introducing the chirp rate, and a high-order multisynchrosqueezing chirplet transform (HMSCT) is proposed to realize cross-component parameter estimation. This study realizes the theoretical expansion of MSST and performs multiple reassignments on a three-dimensional time-frequency-chirp rate (TFC) framework for the first time. Numerical experiments on typical multi-component FM signals show that the proposed method can provide a more accurate TF representation and high-precision component separation.
AB - It is important to study recognition and recovery of effective signal components for information extraction of composite signals. However, owing to the limitation of time-frequency (TF) resolution, composite signal detection has always been a difficult problem, particularly for signals with crossover frequencies, namely crossover signals. This study proposes a new approach to solve signal estimation based on optimization of TF distribution. Firstly, based on the theory of multisynchrosqueezing transform (MSST), a high-order multisynchrosqueezing wavelet transform (HMSWT) that can accurately estimate the nonlinear instantaneous frequency (IF) is studied. On this basis, wavelet coefficient reassignment is extended to two dimensions by introducing the chirp rate, and a high-order multisynchrosqueezing chirplet transform (HMSCT) is proposed to realize cross-component parameter estimation. This study realizes the theoretical expansion of MSST and performs multiple reassignments on a three-dimensional time-frequency-chirp rate (TFC) framework for the first time. Numerical experiments on typical multi-component FM signals show that the proposed method can provide a more accurate TF representation and high-precision component separation.
KW - Crossover components
KW - High-order multisynchrosqueezing chirplet transform
KW - Instantaneous frequency estimation
KW - Time-frequency-chirp rate
KW - Two-dimensional reassignment
UR - https://www.scopus.com/pages/publications/85189100231
U2 - 10.1016/j.dsp.2024.104482
DO - 10.1016/j.dsp.2024.104482
M3 - 文章
AN - SCOPUS:85189100231
SN - 1051-2004
VL - 149
JO - Digital Signal Processing: A Review Journal
JF - Digital Signal Processing: A Review Journal
M1 - 104482
ER -