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首页> 外文期刊>Sensors >Design and Imaging of Ground-Based Multiple-Input Multiple-Output Synthetic Aperture Radar (MIMO SAR) with Non-Collinear Arrays
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Design and Imaging of Ground-Based Multiple-Input Multiple-Output Synthetic Aperture Radar (MIMO SAR) with Non-Collinear Arrays

机译:具有非直线阵列的地基多输入多输出合成孔径雷达(MIMO SAR)的设计和成像

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Multiple-Input Multiple-Output (MIMO) radar provides much more flexibility than the traditional radar thanks to its ability to realize far more observation channels than the actual number of transmit and receive (T/R) elements. In designing the MIMO imaging radar arrays, the commonly used virtual array theory generally assumes that all elements are on the same line. However, due to the physical size of the antennas and coupling effect between T/R elements, a certain height difference between T/R arrays is essential, which will result in the defocusing of edge points of the scene. On the other hand, the virtual array theory implies far-field approximation. Therefore, with a MIMO array designed by this theory, there will exist inevitable high grating lobes in the imaging results of near-field edge points of the scene. To tackle these problems, this paper derives the relationship between target’s point spread function (PSF) and pattern of T/R arrays, by which the design criterion is presented for near-field imaging MIMO arrays. Firstly, the proper height between T/R arrays is designed to focus the near-field edge points well. Secondly, the far-field array is modified to suppress the grating lobes in the near-field area. Finally, the validity of the proposed methods is verified by two simulations and an experiment.
机译:多输入多输出(MIMO)雷达比传统雷达具有更大的灵活性,这是因为它具有比实际发射和接收(T / R)元素数量更多的观测通道的能力。在设计MIMO成像雷达阵列时,通常使用的虚拟阵列理论通常假定所有元素都在同一条线上。然而,由于天线的物理尺寸和T / R元件之间的耦合效应,T / R阵列之间的一定高度差是必不可少的,这将导致场景边缘点的散焦。另一方面,虚拟阵列理论意味着远场近似。因此,利用该理论设计的MIMO阵列,在场景的近场边缘点的成像结果中必然存在不可避免的高光栅波瓣。为了解决这些问题,本文推导了目标点扩展函数(PSF)与T / R阵列模式之间的关系,从而提出了近场成像MIMO阵列的设计准则。首先,设计T / R阵列之间的适当高度以很好地聚焦近场边缘点。其次,修改远场阵列以抑制近场区域中的光栅波瓣。最后,通过两个仿真和实验验证了所提方法的有效性。

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