[1] 李海, 吴嗣亮, 莫力. 微弱信号长时间积累的检测算法[J]. 北京理工大学学报, 2001, 21(5): 614-617.
Li Hai, Wu Siliang, Mo Li. Detection Methods of Long-term Coherent Integration for Dim Targets[J]. Journal of Beijing Institute of Technology, 2001, 21(5): 614-617.
[2] Perry R P, Fante R L. SAR Imaging of Moving Target[J]. IEEE Trans on AES, 1999, 35(1): 188-200.
[3] 张顺生, 曾涛. 基于Keystone变换的微弱目标检测[J]. 电子学报, 2005, 33(9): 1675-1678.
Zhang Shunsheng, Zeng Tao. Dim Target Detection Based on Keystone Transform[J]. Acta Electronica Sinica, 2005, 33(9): 1675-1678.
[4] Li Y, Zeng T, Long T, et al. Range Migration Compensation and Doppler Ambiguity Resolution by Keystone Transform[C]//International Conference on Radar. Shanghai: IEEE Press, 2006: 1466-1469.
[5] Yuan Sijie, Wu Tao. Application Research of Keystone Transform in Weak High-Speed Target Detection in Low-PRF Narrowband Chirp Radar[C]//IEEE ICSP Proceedings. Beijing: IEEE, 2008: 2452-2456.
[6] Zhang Shunsheng, Zhang Wei, Wang Yang. Multiple Targets' Detection in terms of Keystone Transform at the low SNR Level[C]//International Conference on Information and Automation. Zhangjiajie: IEEE Press, 2008: 1-4.
[7] 原浩娟, 高梅国, 姜伟, 等. 基于Knab内插核的Keystone变换[J]. 数据采集与处理, 2010, 25(4): 425-429.
Yuan Haojuan, Gao Meiguo, Jiang Wei, et al. Keystone Transform Using Knab Interpolation Kernel[J]. Journal of Data Acquisition & Processing, 2010, 25(4): 425-429.
[8] Hanssen R, Bamler R. Evaluation of Interpolation Kernels for SAR Interferometry[J]. IEEE Trans on Geoscience and Remote Sensing, 1999, 37(1): 318-321.
[9] 保铮, 刑孟道, 王彤. 雷达成像技术[M]. 北京: 电子工业出版社, 2005. |