Title :
ISAR Imaging of Maneuvering Target Based on the L-Class of Fourth-Order Complex-Lag PWVD
Author :
Wang, Yong ; Jiang, Yicheng
Author_Institution :
Res. Inst. of Electron. Eng. Technol., Harbin Inst. of Technol., Harbin, China
fDate :
3/1/2010 12:00:00 AM
Abstract :
In inverse synthetic aperture radar (ISAR) imaging of a maneuvering target, the received signal in a range bin can be characterized as a multicomponent polynomial phase signal (PPS) after motion compensation. The traditional discrete Fourier transform algorithm is not appropriate in analyzing the PPS. In this paper, the L-class of a fourth-order complex-lag polynomial Wigner-Ville distribution (PWVD) is presented to generate a high-resolution time-frequency distribution (TFD) for the multicomponent PPS. For a signal with polynomial phase up to order four (this is accurate enough in ISAR imaging), the cross-terms between different components can be reduced by the convolution in the frequency domain of the L-class of the fourth-order complex-lag PWVD. The new TFD is used in the ISAR imaging of the maneuvering target, and high-quality instantaneous ISAR images are obtained. Results of simulated and real data demonstrate the effectiveness of the method above.
Keywords :
Wigner distribution; convolution; discrete Fourier transforms; geophysical signal processing; geophysical techniques; motion compensation; radar imaging; synthetic aperture radar; target tracking; ISAR imaging; discrete Fourier transform algorithm; fourth-order complex-lag PWVD; fourth-order complex-lag polynomial Wigner-Ville distribution; frequency domain convolution; high-resolution time-frequency distribution; inverse synthetic aperture radar; maneuvering target; motion compensation; multicomponent polynomial phase signal; Inverse synthetic aperture radar (ISAR); L-class of fourth-order complex-lag PWVD (LCPW); multicomponent polynomial phase signal (PPS);
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Conference_Location :
10/30/2009 12:00:00 AM
DOI :
10.1109/TGRS.2009.2032296