A fast decoupled ISAR high-resolution imaging method using structural sparse information under low SNR

被引:0
作者
XIANG Long [1 ]
LI Shaodong [2 ]
YANG Jun [1 ]
CHEN Wenfeng [1 ]
XIANG Hu [1 ]
机构
[1] Department of Air Defense Early Warning Equipment,Air Force Early Warning Academy
[2] Unit of the PLA
关键词
sparse recovery; inverse synthetic aperture radar(ISAR) imaging; high-resolution; signal to noise ratio(SNR); structural sparse information;
D O I
暂无
中图分类号
TN957.52 [数据、图像处理及录取];
学科分类号
080904 ; 0810 ; 081001 ; 081002 ; 081105 ; 0825 ;
摘要
Inverse synthetic aperture radar(ISAR) image can be represented and reconstructed by sparse recovery(SR) approaches. However, the existing SR algorithms, which are used for ISAR imaging, have suffered from high computational cost and poor imaging quality under a low signal to noise ratio(SNR)condition. This paper proposes a fast decoupled ISAR imaging method by exploiting the inherent structural sparse information of the targets. Firstly, the ISAR imaging problem is decoupled into two sub-problems. One is range direction imaging and the other is azimuth direction focusing. Secondly, an efficient two-stage SR method is proposed to obtain higher resolution range profiles by using jointly sparse information. Finally, the residual linear Bregman iteration via fast Fourier transforms(RLBI-FFT) is proposed to perform the azimuth focusing on low SNR efficiently. Theoretical analysis and simulation results show that the proposed method has better performence to efficiently implement higher-resolution ISAR imaging under the low SNR condition.
引用
收藏
页码:492 / 503
页数:12
相关论文
共 3 条
[1]   一种快速复数线性Bregman迭代算法及其在ISAR成像中的应用 [J].
李少东 ;
陈文峰 ;
杨军 ;
马晓岩 .
中国科学:信息科学, 2015, 45 (09) :1179-1196
[2]  
High-resolution ISAR imaging of maneuvering targets based on sparse reconstruction[J] . Chao Sun,Baoping Wang,Yang Fang,Kaifang Yang,Zuxun Song. Signal Processing . 2014
[3]  
Sparse Representation Denoising for Radar High Resolution Range Profiling[J] . Min Li,Gongjian Zhou,Bin Zhao,Taifan Quan,Margaret Cheney. International Journal of Antennas and Propagation . 2014