双基地逆合成孔径雷达成像

Zhenbo Zhu, Yabiao Zhang, Zi-yue Tang
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引用次数: 17

摘要

单站雷达配置的使用限制了逆合成孔径雷达(ISAR)系统成像特定几何形状目标的能力。采用双静态几何可以克服这一限制。由于预计将有大量的雷达任务,双基地雷达系统将在未来十年发挥重要作用。利用现有的发射器,小型无源接收器的编队将增强从目标收集反向散射信息的能力。本文推导了发射与接收分离的双基地ISAR几何形状。该应用充分利用了双基地几何结构的优势,如成像速率高、隐身效果好等。从理论上讨论了利用双基地雷达几何形状和双基地ISAR特性获取ISAR图像的可能性,并用计算机仿真结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bistatic inverse synthetic aperture radar imaging
The use of a monostatic radar configuration limits the ability of an inverse synthetic aperture radar (ISAR) system to image targets in certain geometries. By employing bistatic geometries this limitation may be overcome. Bistatic radar systems will pay a great role in the coming decade since a large number of radar missions are being foreseen. Using existing transmitters, formations of small passive receivers will enhance capability to gather backscatter information from targets. This paper derives the bistatic ISAR geometries with separated transmitter and receiver. This application capitalizes on the advantages provided by bistatic geometries, such as high imaging rate, good stealth effect, etc. The possibility of obtaining ISAR images using the bistatic radar geometries and the characteristics of bistatic ISAR is theoretically discussed, and then verified using computer simulation results.
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