Zhao Shu-qing, Zhou Zhi-xin, Li Shao-bin61571. The System Design and Simulation on Spaceborne SAR[J]. Journal of Electronics & Information Technology, 2006, 28(8): 1468-1471.
Citation:
Zhao Shu-qing, Zhou Zhi-xin, Li Shao-bin61571. The System Design and Simulation on Spaceborne SAR[J]. Journal of Electronics & Information Technology, 2006, 28(8): 1468-1471.
Zhao Shu-qing, Zhou Zhi-xin, Li Shao-bin61571. The System Design and Simulation on Spaceborne SAR[J]. Journal of Electronics & Information Technology, 2006, 28(8): 1468-1471.
Citation:
Zhao Shu-qing, Zhou Zhi-xin, Li Shao-bin61571. The System Design and Simulation on Spaceborne SAR[J]. Journal of Electronics & Information Technology, 2006, 28(8): 1468-1471.
An application program, SARSIMS, is developed for spaceborne SAR. SARSIMS can be used in designing system parameters, and SARSIMS also performs analysis of system parameters, echo generating, SAR image formation, and system simulation. The design of system parameters and swath selection is completed by interactive operation. Visualization is an important characteristic of SARSIMS. Because of visualization in design procedures, SARSIMS provides an efficient method and is capable of satisfying user requirements.
刘永坦等著. 雷达成像技术. 哈尔滨:哈尔滨工业大学出版社,1999,第三章和第五章.[2]Curlander J C.[J].McDonough R N. Synthetic Aperture Radar Systems and Signal Processing. New York: John Wiley Sons, INC.1991,:-[3]Cimmino S, Franceschetti G, Iodice A, et al.. Efficient spotlight SAR raw signal simulation of extended scenes[J].IEEE Trans. on Geosci. Remote Sensing.2003, 41(10):2329-[4]Holzner J, Bamler R. Burst-mode and Scan SAR interferometry[J].IEEE Trans. on Geosci. Remote Sensing.2002, 40(9):1917-