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Modeling antennas printed on magnetized substrate: Application to the design of a tunable PIFA antenna

机译:建模印刷在磁化基板上的天线:在可调谐PIFA天线设计中的应用

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A miniature reconfigurable PIFA antenna (Printed-Inverted-F-Antenna) is investigated in this paper. This antenna is printed on magneto-dielectric substrate. The tunability is achieved by the application of an external DC magnetic biasing field, thanks to the field-dependent permeability of the substrate. In order to design this antenna a modeling tool is implemented. It consists in coupling a magnetic material model and EM simulator. The ???General Permeability Tensor??? (GPT) model is used in order to determine the permeability tensor whatever the magnetization state of the substrate is. The coupling of the GPT model with an electromagnetic simulator (CST Microwave Studio R ??) allows for the complete description of microwave characteristics of the antenna. The confrontation between the measurement and simulation for different applied DC biasing fields allows enhancing and validating the theoretical approach developed.
机译:本文研究了一种微型可重构PIFA天线(印刷反相F天线)。该天线被印刷在磁电介质基板上。由于基板的磁场相关导磁率,可通过施加外部直流磁偏置场来实现可调谐性。为了设计该天线,实现了建模工具。它包括耦合磁性材料模型和EM仿真器。一般渗透率张量(GPT)模型用于确定磁导率张量,无论衬底的磁化状态如何。 GPT模型与电磁模拟器(CST Microwave Studio R ??)的耦合可以完整描述天线的微波特性。针对不同的应用直流偏置场进行的测量与仿真之间的对抗,可以增强和验证所开发的理论方法。

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