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3D remote sensing based on frequency scanning metamaterial antenna array using linear sampling method

机译:基于线性采样法的频率扫描超材料天线阵列的3D遥感

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This paper presents a novel approach for linear sampling method (LSM) to conduct remote sensing for radar applications, such as automotive radar sensors, by incorporating frequency mapping antenna array based on metamaterial leaky wave antennas (MTM-LWAs). Unlike traditional LSM using only one single frequency to illuminate in a certain direction, the proposed approach utilizes a frequency scanning MTM antenna array to perform frequency-space mapping over the targeted three dimensional (3D) background that includes unknown objects, resulting in a significantly increased field-of-view (FOV). The information obtained from the frequency-space scanning scheme is then transferred to the LSM analysis to detect the locations and shapes of the unknown objects. The proposed novel frequency scanning scheme in combination with LSM serves as an efficient 3D remote sensing scheme without the use of any phase shifters.
机译:本文通过结合基于超材料漏波天线(MTM-LWAs)的频率映射天线阵列,提出了一种用于线性采样方法(LSM)的新方法,该方法可用于雷达应用(例如汽车雷达传感器)的遥感。与仅使用一个单一频率沿某个方向照亮的传统LSM不同,该提议的方法利用频率扫描MTM天线阵列在包括未知对象的目标三维(3D)背景上执行频率空间映射,从而显着增加了视场(FOV)。然后将从频率空间扫描方案获得的信息传输到LSM分析,以检测未知对象的位置和形状。所提出的新颖的频率扫描方案与LSM相结合,可作为一种高效的3D遥感方案,而无需使用任何移相器。

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