DocumentCode :
68910
Title :
Amplitude-phase discontinuity calibration for phased array radar in varying jamming environment
Author :
Ziqiang Meng ; Yachao Li ; Xiufeng Song ; Mengdao Xing ; Zheng Bao
Author_Institution :
Nat. Lab. of Radar Signal Process., Xidian Univ., Xi´an, China
Volume :
8
Issue :
7
fYear :
2014
fDate :
Sep-14
Firstpage :
729
Lastpage :
737
Abstract :
The amplitude-and-phase error (APE) between phased array channels is notorious in radar signal processing. This error can cause an inaccurate estimate of unknown steering vector of the target echo signal and eventually result in amplitude-phase discontinuity of the phased array output. Thus, how to handle the APE is a meaningful problem, particularly for the varying jamming environment, of which the signal-to-noise ratio is very low. In this study, the authors have developed a new method to obtain real-time amplitude and phase differences between two consecutive weight update periods based on the accurate estimation of steering vector. Such differences can be used to obtain a real-time weight vector with negligible amplitude-phase distortions, and hence improves the phased array signal-processing performance. The proposed method is very flexible: it works well in different array configurations, such as linear, rectangular and Y-shape arrays, and can be efficiently implemented in any eigenstructure-based direction-of-arrival system.
Keywords :
array signal processing; calibration; direction-of-arrival estimation; eigenvalues and eigenfunctions; error analysis; jamming; phase estimation; phased array radar; radar cross-sections; radar signal processing; APE; amplitude difference; amplitude-and-phase error; amplitude-phase discontinuity calibration; amplitude-phase distortion; array conflgurations; consecutive weight update period; eigenstructure-based direction-of-arrival system; phase difference; phased array channels; phased array radar; phased array signal processing performance; radar signal processing; signal-to-noise ratio; target echo signal; unknown steering vector estimation accuracy; varying jamming environment; weight vector;
fLanguage :
English
Journal_Title :
Signal Processing, IET
Publisher :
iet
ISSN :
1751-9675
Type :
jour
DOI :
10.1049/iet-spr.2013.0308
Filename :
6898674
Link To Document :
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