Title :
Multichannel HRWS SAR Imaging Based on Range-Variant Channel Calibration and Multi-Doppler-Direction Restriction Ambiguity Suppression
Author :
Shuang-Xi Zhang ; Meng-Dao Xing ; Xiang-Gen Xia ; Lei Zhang ; Rui Guo ; Yi Liao ; Zheng Bao
Author_Institution :
Nat. Key Lab. of Radar Signal Process., Xidian Univ., Xi´an, China
Abstract :
In order to obtain high-resolution wide-swath (HRWS) images, the multichannel in azimuth synthetic aperture radar (SAR) system has been adopted to deal with the contradiction problem between high resolution and low pulse repetition frequency (PRF). In this paper, a novel channel-calibration method is proposed for the multichannel in azimuth HRWS SAR imaging system. During the channel calibration, the mismatch between the channels, which results from the gain-phase error and the range sampling time error, is first corrected by the coarse-calibration processing in the range frequency domain. Then, the along azimuth baseline measurement error is estimated. Considering the range variance in the residual phase error, the data are processed in blocks along the range time domain, and the error of every subblock data is estimated. After that, a fitting and filtering is implemented along the range to the estimated values of the phase error of all subblocks. The range-variant phase error is then compensated using their estimated values. After channel calibration, this paper also presents a new Doppler ambiguity suppression algorithm which nulls the ambiguity components in the Doppler domain. The newly proposed algorithm outperforms the post-Doppler ambiguity suppression algorithm. The airborne real measured scan synthetic aperture radar data, which are acquired by a seven-channel in azimuth SAR imaging system with the system working at X-band, are utilized to demonstrate the performance of the newly proposed channel-calibration method and the new Doppler ambiguity suppression algorithm.
Keywords :
Doppler radar; calibration; radar imaging; remote sensing by radar; synthetic aperture radar; PRF; SAR resolution; X-band SAR imaging system; along azimuth baseline measurement error; azimuth HRWS SAR imaging system; azimuth SAR system; channel calibration method; channel mismatch; coarse calibration processing; error estimation; filtering procedure; fitting procedure; gain phase error; high resolution wide swath images; multiDoppler direction restriction ambiguity suppression; multichannel HRWS SAR imaging; post Doppler ambiguity suppression algorithm; pulse repetition frequency; range frequency domain; range sampling time error; range variant channel calibration; range variant phase error; seven channel azimuth SAR imaging system; subblock data error; synthetic aperture radar; Antenna measurements; Azimuth; Calibration; Doppler effect; Position measurement; Radar polarimetry; Synthetic aperture radar; Channel calibration; Doppler ambiguity suppression; digital beam forming; high-resolution wide-swath (HRWS); nonuniform sampling; range-variant phase error; signal reconstruction; subspace; synthetic aperture radar (SAR);
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2013.2281329