[1] 邓云凯,禹卫东,张衡,等. 未来星载SAR技术发展趋势[J]. 雷达学报, 2020, 9(1): 1-33. DOI:10.12000/JR20008. [2] 张梓琪,王小龙. 一种基于显著性的高海况SAR图像船舶目标检测方法[J]. 中国科学院大学学报, 2022, 39(5): 695-703. DOI:10.7523/j.ucas.2020.0050. [3] 刘雨洁,齐向阳. 基于长时间间隔序贯SAR图像的运动舰船跟踪方法[J]. 中国科学院大学学报, 2021, 38(5): 642-648. DOI:10.7523/j.issn.2095-6134.2021.05.008. [4] 王振东,陈溅来,孙光才,等. 通用的SAR系统分辨能力评估方法[J]. 系统工程与电子技术, 2017, 39(1): 57-63. DOI:10.3969/j.issn.1001-506X.2017.01.09. [5] Fan H T, Zhang L, Zhang Z M, et al. On the processing of Gaofen-3 spaceborne dual-channel sliding spotlight SAR data[J]. IEEE Transactions on Geoscience and Remote Sensing. 2022, 60: 1-12. DOI:10.1109/TGRS.2021.3058971. [6] Min R, Wang Y, Ding Z G, et al. Spatial resolution improvement via radar parameter adjustment for extremely-high-squint spotlight SAR[C]//2021 IEEE International Geoscience and Remote Sensing Symposium IGARSS. July 11-16, 2021, Brussels, Belgium. IEEE, 2021: 2963-2966. DOI:10.1109/IGARSS47720.2021.9553486. [7] 刘文康. 中高轨合成孔径雷达成像关键技术研究[D]. 西安: 西安电子科技大学, 2020. [8] 杨航. 复杂环境下的SAR图像舰船目标检测算法研究[D].合肥: 合肥工业大学, 2020. [9] Zhang Q J, Yin W, Ding Z G, et al. An optimal resolution steering method for geosynchronous orbit SAR [J]. IEEE Geoscience and Remote Sensing Letters, 2014, 11(10): 1732-1736. DOI:10.1109/LGRS.2014.2307167. [10] Zhou C W, Li Z F, Wang Z B, et al. A feasible satellite attitude maneuver strategy for high resolution sliding spotlight SAR[C]//IGARSS 2019-2019 IEEE International Geoscience and Remote Sensing Symposium. July 28-August 2, 2019, Yokohama, Japan. IEEE, 2019: 8852-8855. DOI:10.1109/IGARSS.2019.8899764. [11] 刘文康,孙光才,陈溅来,等. 一种高轨SAR带宽与合成孔径时间的设计方法[J]. 西安电子科技大学学报(自然科学版),2017,44(5): 58-63. DOI:10.3969/j.issn.1001-2400.2017.05.010. [12] Yin W, Ding Z G, Lu X J, et al. Beam scan mode analysis and design for geosynchronous SAR[J]. Science China Information Sciences, 2017, 60(6): 060306. DOI:10. 1007/s11432-016-9082-9. [13] Ding Z G, Yin W, Zeng T, et al. Radar parameter design for geosynchronous SAR in squint mode and elliptical orbit[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2016, 9(6): 2720-2732. DOI:10.1109/JSTARS.2016.2570231. [14] Brown W M, Porcello L J. An introduction to synthetic-aperture radar[J]. IEEE Spectrum, 1969, 6(9): 52-62. DOI:10.1109/MSPEC.1969.5213674. [15] Kennedy J, Eberhart R. Particle swarm optimization[C]//Proceedings of ICNN’95-International Conference on Neural Networks. November 27-December 1, 1995, Perth, WA, Australia. IEEE, 2002: 1942-1948. DOI:10.1109/ICNN.1995.488968. [16] 杨维,李歧强. 粒子群优化算法综述[J]. 中国工程科学,2004,6(5): 87-94. DOI:10.3969/j.issn.1009-1742.2004. 05.018. [17] 贺雨露,代大海,庞礴,等. 基于粒子群优化的极化SAR定标算法[J]. 雷达科学与技术,2019,17(4): 401-408. DOI:10.3969/j.issn.1672-2337.2019.04.008. [18] Mittermayer J, Lord R, Borner E. Sliding spotlight SAR processing for TerraSAR-X using a new formulation of the extended chirp scaling algorithm[C]//IGARSS 2003.2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477). July 21-25, 2003, Toulouse, France. IEEE, 2004: 1462-1464. DOI:10.1109/IGARSS.2003.1294144. |