Beam-Space Based MIMO SAR Digital Beamforming with Array-Fed Reflector Antennas

Yifan Sun, Feng He, Sen Zhou, Fuyou Li, Zhen-ya Tan
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引用次数: 1

Abstract

In a Multiple-Input Multiple-Output Synthetic Aperture Radar (MIMO SAR) system, the miniaturization and high gain of the antenna has been pursued all the time. At the same time, it is common to partially transfer the pressure of suppressing azimuth ambiguity to range so as to balance antenna size, and thereupon following a problem that the radar echoes in elevation are sensitive to terrain undulation. A promising candidate is the combination of array-fed reflector antenna and Digital Beamforming (DBF) technique. Therefore, this paper establishes an echo model for array-fed reflector antenna and proposes a beamspace based DBF method applied to array-fed reflector antennas. Simulations taking use of the proposed DBF method are carried out to verify the effect on range ambiguity suppression. Aiming at the terrain-undulation-sensitive problem, a derivative constraint to steering vector is added during the DBF process, which greatly improves the robustness of DBF in elevation.
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基于波束空间的阵列馈电反射天线MIMO SAR数字波束形成
在多输入多输出合成孔径雷达(MIMO SAR)系统中,天线的小型化和高增益一直是人们追求的目标。同时,为了平衡天线尺寸,通常会将抑制方位模糊的压力部分转移到距离上,从而产生高程雷达回波对地形波动敏感的问题。阵列馈电反射面天线与数字波束形成技术相结合是一种很有前途的方案。为此,本文建立了阵列馈电反射面天线的回波模型,提出了一种应用于阵列馈电反射面天线的波束空间DBF方法。利用DBF方法进行了仿真,验证了该方法对距离模糊抑制的效果。针对地形波动敏感问题,在DBF过程中加入转向向量的导数约束,极大地提高了DBF在高程上的鲁棒性。
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