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Near-field probe measurements of microwave scattering from discontinuities in planar surfaces

机译:来自平面不连续性的微波散射的近场探针测量

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In microwave scattering, nonradiating fields may contribute to radiating fields by local perturbations such as geometric discontinuities or variations in impedance or electromagnetic properties. Near-field measurements of scattering bodies provide insight into these scattering mechanisms by measuring both radiated and nonradiated fields. In this research, an H-field probe measured scattering from simple discontinuities in planar bodies at frequencies between 2 and 10 GHz. Illumination of the test-body was furnished by a focused lens system with a Gaussian-like tapered beam that locally illuminated inhomogeneities on the body. Measured data and model calculations are presented for scattered H-fields near canonical discontinuities (e.g. gaps and edges in conducting planes). Calculations of the plane wave spectrum of the measured and modeled data were used to distinguish specular reflected components from surface modes. A focused beam was simulated in a finite-difference time-domain (FDTD) model with a weighted sum of plane waves. FDTD results agreed with the measured near-field data.
机译:在微波散射中,非辐射场可能通过局部扰动(例如几何不连续性或阻抗或电磁特性的变化)对辐射场做出贡献。散射体的近场测量可以通过测量辐射场和非辐射场来深入了解这些散射机制。在这项研究中,H场探头在2至10 GHz的频率下测量了平面体内简单不连续的散射。测试体的照明由聚焦透镜系统提供,该透镜系统具有类似高斯的锥形光束,该光束局部照亮了身体上的不均匀性。针对典型不连续点附近的分散H场(例如导电平面中的间隙和边缘)提供了测量数据和模型计算。测量和建模数据的平面波谱计算用于区分镜面反射分量和表面模式。在有限差分时域(FDTD)模型中使用平面波的加权总和模拟聚焦光束。 FDTD结果与测得的近场数据一致。

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