西安电子科技大学雷达信号处理国家重点实验室,西安,710071
网络首发:2014-08-10,
纸质出版:2014
移动端阅览
孟自强, 李亚超, 李浩林, 等. 双/多基地合成孔径雷达前视三维分辨力研究及运动参数设计[J]. 西安交通大学学报, 2014,48(8):29-35.
Capability Study of Three-Dimensional Forward-Looking Resolution and Motion Parameter Design for Bistatic/Multi-Static Synthetic Aperture Radar[J]. 2014, 48(8): 29-35.
孟自强, 李亚超, 李浩林, 等. 双/多基地合成孔径雷达前视三维分辨力研究及运动参数设计[J]. 西安交通大学学报, 2014,48(8):29-35. DOI: 10.7652/xjtuxb201408006.
Capability Study of Three-Dimensional Forward-Looking Resolution and Motion Parameter Design for Bistatic/Multi-Static Synthetic Aperture Radar[J]. 2014, 48(8): 29-35. DOI: 10.7652/xjtuxb201408006.
为了准确获取高空高速双/多基地合成孔径雷达(B/M-SAR)目标回波的二维空变特性
建立了空间几何运动构型
借助梯度法和模糊函数理论
对B/M-SAR的前视三维成像能力和分辨特性进行了分析和研究
并基于分辨力的变化特性
设计了影响成像分辨力的主要运动参数。研究结果表明:B/M-SAR具有前视三维成像能力
成像场景存在最佳成像区域和发射机平台最佳飞行时段; 多普勒分辨力和地距分辨力均具有二维空变性
目标纵坐标的增大会引起地距分辨能力增强
且在发射机旋转角度270 °处达到最优; 高度向分辨力不具有位置空变性
在接收机运行至目标区域正上方时分辨性能最佳; 要达到1 m的地距分辨力和2 m的高度分辨力
应选择234.7 MHz的发射信号带宽。
A study is conducted on three-dimensional(3D)forward-looking imaging capability and resolution property of bistatic/multi-static synthetic aperture radar(B/M-SAR)in high-space and high-speed state to accurately obtain two-dimensional(2D)variance characteristics of target echo in this configuration. A geometric model is built
and the gradient method and the ambiguity function method are adopted in analysis and simulations. And main motion parameters that affect resolution significantly are designed. The analysis and simulation results show that B/M-SAR possesses the 3D forward-looking imaging capability and there exist the optimal resolution area in the imaging area and the optimal motion period of transmitter. Both the Doppler resolution and the range resolution have 2D variant
but the range resolution becomes better as the y-axis of target increases and reaches the best performance at the transmitter rotation angle of 270 °. Height resolution is invariant in location and performs the best as receiver moves on the right above of the target area. Transmitting signal bandwidth of 234.7 MHz should be chosen to obtain range resolution of 1 meters and height resolution of 2 meters.
闵锐. 机载SAR三维成像理论及关键技术研究[D]. 成都: 电子科技大学, 2012.
郭冠斌, 方青. 雷达组网技术的现状与发展[J]. 雷达科学与技术, 2005, 3(4): 193-198.
GUO Guanbin, FANG Qing. Current status and development of radar netting technique[J]. Radar Science and Technology, 2005, 3(4): 193-198.
宋千, 李杨寰, 梁福来, 等. 圆迹合成孔径雷达成像分辨力分析[J]. 计算机仿真, 2011, 28(10): 18-23.
SONG Qian, LI Yanghuan, LIANG Fulai, et al. Analysis of circular SAR time-domain imaging resolution[J]. Computer Simulation, 2011, 28(10): 18-23.
PONCE O, PRATS-IRAOLA P, PINHEIRO M, et al. Fully polarimetric high-resolution 3-D imaging with circular SAR at L-band[J]. IEEE Transactions on Geoscience and Remote Sensing, 2014, 52(6): 3074-3090.
LIN Yun, HONG Wen, TAN Weixian, et al. Airborne circular SAR imaging: results at P-band[C]∥Proceedings of IEEE International Geoscience and Remote Sensing Symposium. Piscataway, NJ, USA: IEEE, 2012: 5594-5597.
QIU Xiaolan, HU Donghui. Some reflections on bistatic SAR of forward-looking configuration[J]. IEEE Geoscience and Remote Sensing Letters, 2008, 5(4): 735-739.
AI Xiaofeng, ZOU Xiaohai, LIU Jin. Bistatic high range resolution profiles of precessing cone-shaped targets[J]. IET Radar, Sonar Navigation, 2013, 7(6): 615-622.
ZENG Tao, CHERNIAKOV M, LONG Teng. Generalized approach to resolution analysis in BSAR[J]. IEEE Transactions on Aerospace and Electronic Systems, 2005, 41(2): 461-474.
PARK S H, KIM H T, KIM K T. Cross-range scaling algorithm for ISAR images using 2-D Fourier transform and polar mapping[J]. IEEE Transactions on Geoscience and Remote Sensing, 2011, 49(2): 868-877.
CARDILLO G P. On the use of gradient to determine bistatic SAR resolution[C]∥Proceedings of Antennas and Propagation Society International Symposium. Piscataway, NJ, USA: IEEE, 1990: 1032-1035.
ISHIMARU A, CHAN T K, KUGA Y. An imaging technique using confocal circular synthetic aperture radar[J]. IEEE Transactions on Geoscience and Remote Sensing, 1998, 36(5): 1524-1530.
WU Junjie, YANG Jianyu, YANG Haiguang, et al. Optimal geometry configuration of bistatic forward-looking SAR[C]∥Proceedings of IEEE International Conference on Acoustics, Speech and Signal Processing. Piscataway, NJ, USA: IEEE, 2009: 1117-1120.
0
浏览量
4
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621