Title :
Internal Calibration for Stepped-Frequency Chirp SAR Imaging
Author :
Deng, Yunkai ; Zheng, Huifang ; Wang, Robert ; Feng, Jin ; Liu, Yue
Author_Institution :
Space Microwave Remote Sensing Syst. Dept., Chinese Acad. of Sci. (IECAS), Beijing, China
Abstract :
For synthetic aperture radar imaging, stepped-frequency chirp signals are widely used to obtain high range resolution. One advantage of the approach is the reduction of the instantaneous bandwidth and sampling rate requirements of the radar system. To reconstruct the spectrum of a wideband signal, the amplitude and phase discontinuity between contiguous pulses should be removed. Otherwise, the discontinuity will defocus the range profile and degrade the range resolution. In this letter, a detailed internal calibration technique combined with stepped-frequency mode is proposed to eliminate the discontinuity and thus improve the focusing quality of the final image. The simulation and real raw data experiments are performed to validate the proposed method.
Keywords :
calibration; radar imaging; sampling methods; synthetic aperture radar; internal calibration technique; sampling rate requirements; stepped frequency chirp SAR imaging; stepped frequency chirp signal; synthetic aperture radar imaging; Bandwidth; Calibration; Chirp; Delay effects; Imaging; Remote sensing; Signal resolution; Discontinuity; high range resolution; internal calibration; synthetic bandwidth;
Journal_Title :
Geoscience and Remote Sensing Letters, IEEE
DOI :
10.1109/LGRS.2011.2157889