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Extending Power-handling of High-power Metamaterial Phase-shifters using Three-dimensional Counter-rotated End-loaded Dipoles

机译:使用三维反旋转的端装偶极级延长高功率超模板移液器的电源处理

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Through the careful consideration of field enhancement observed in individual unit cells, metamaterials can be designed for use in high power microwave (HPM) applications. However, power handling considerations are only one aspect of any metamaterial design's performance. Presented here are two metamaterial unit cell geometries which feature reconfigurable reflection phase behaviors intended for HPM reflectarray applications. The unit cells are comprised of two end-loaded dipoles (ELD) which are counter-rotated to eliminate cross-pol while achieving the desired reflection phase angle. It is shown that by extending a planar ELD to a volumetric (i.e., three-dimensional) design, the observed field enhancement can be drastically reduced thus providing a path for improved power-handling performance.
机译:通过仔细考虑在各个单元电池中观察到的现场增强,可以设计用于高功率微波(HPM)应用的超材料。但是,电源处理注意事项只是任何超材料设计性能的一个方面。此处提出了两个超材料单元电池几何形状,其具有用于HPM反射阵列应用的可重构的反射阶段行为。单元电池由两个端载偶极子(ELD)组成,其被反旋转以消除交叉极,同时实现所需的反射相位角。结果表明,通过将平面ELD扩展到体积(即三维)设计,可以大大减少观察到的现场增强,从而提供了用于改进的功率处理性能的路径。

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