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Design of a mounting plate for a low reflection level over a wide range of incidence angles from a profiled lossy dielectric plate

机译:异型有损介电板的安装板设计,可在宽入射角范围内实现低反射水平

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This paper presents the design of a mounting plate with such a complex permittivity profile as to minimize the reflection off the mounting plate over a broad range of incidence angles while also providing the mechanical rigidity necessary for mounting a styrofoam jig holding the device under test. The permittivity profile is achieved by boring circular cones from the front and the back surfaces of a lossy dielectric slab in a way that achieves near-optimum packing of the cones on both surfaces. The resulting geometry is reminiscent of a, honeycomb structure, and is modeled as a uniaxial medium with the optic axis parallel to the normal of the plate. A modified scattering matrix propagator scheme was developed to predict the reflection and the transmission coefficients for both the TE/sup z/ and TM/sup z/ polarizations in a way that takes into account explicitly both the effect of the non-uniform wave propagation incurred by the presence of material losses, and the effect of the longitudinal anisotropy incurred by the geometry of the machined plate. A choice of parameters that yields a predicted reflection level of less than about -22 dB over an angular range of 0/spl deg/ to about 50/spl deg/ is presented.
机译:本文提出了一种具有复杂介电常数分布的安装板设计,以最大程度地减小在宽入射角范围内从安装板上的反射,同时还提供了安装用于固定被测装置的聚苯乙烯泡沫塑料夹具所需的机械刚度。介电常数的分布是通过从有损介电板的正面和背面钻孔圆锥体来实现的,从而使圆锥体在两个表面上的堆积达到最佳状态。产生的几何形状让人联想到蜂窝状结构,并被建模为光轴平行于板法线的单轴介质。开发了一种改进的散射矩阵传播器方案,以预测TE / sup z /和TM / sup z /极化的反射和透射系数,从而明确考虑了非均匀波传播的影响由于存在材料损失,以及加工板材的几何形状引起的纵向各向异性的影响。提出了在0 / spl deg /至约50 / spl deg /的角度范围内产生小于约-22 dB的预测反射水平的参数的选择。

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