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Effective three-dimensional microwave tomography based on metamaterial leaky wave antennas using linear sampling method

机译:基于超材料漏波天线的线性采样有效三维微波层析成像

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The linear sampling method (LSM) is a highly effective method to detect the shape of complex geometry. In this paper, we propose a novel kind of LSM using metamaterial (MTM) leaky wave antennas (LWAs) to reconstruct a multi-layered shape with modal forward scattering. By surrounding the target with the MTM LWAs, we demonstrate that the LSM is capable of reconstructing shapes efficiently in three dimensions (3D). The frequency-space mapping characteristics of MTM LWAs can lead to a comprehensive 3D microwave tomography, which provides a more efficient approach compared with traditional LSM methods. This unique combination of LSM and frequency scanning MTM antennas results in a highly effective and systematic method to reconstruct the 3D shape for unknown objects.
机译:线性采样方法(LSM)是检测复杂几何形状的高效方法。在本文中,我们提出了一种使用超材料(MTM)泄漏波天线(LWA)来构造具有模态前向散射的多层形状的新型LSM。通过用MTM LWA围绕目标,我们证明LSM能够有效地在三个维度(3D)上重建形状。 MTM LWA的频率空间映射特性可以导致全面的3D微波层析成像,与传统的LSM方法相比,它提供了一种更有效的方法。 LSM和频率扫描MTM天线的这种独特组合产生了一种高效且系统的方法,可为未知物体重建3D形状。

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