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Multifunctional microwave devices based on metamaterial transmission lines

机译:基于超材料传输线的多功能微波器件

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Design of microwave devices based on a combination of traditional right-handed transmission line sections with positive dispersion and metamaterial left-handed transmission line sections with negative dispersion is considered. Compared to homogeneous transmission lines, the use of cascaded line sections gives additional degrees of freedom for the design of microwave devices with enlarged functionality and unique performance. Artificial way of right- and left-handed transmission lines realization based on lumped-element equivalent cells helps to minimize the dimensions of microwave devices. For filters, a combination of cascaded right- and left-handed transmission lines can be applied advantageously, to control the position and the widths of the individual pass-bands and the parasitic response of higher harmonics. The design of tunable dual-band filters is discussed and experimental results are presented. The miniature tuneable directional coupler is also under consideration. Artificial right- and left-handed transmission line sections based on lumped-element Π-cells are employed. In order to verify the theoretical prediction, a tuneable lumped-element rat-race ring has been designed and experimentally investigated. Semiconductor varactor diodes have been used as tuneable components.
机译:考虑了基于传统右手传输线部分的微波器件的设计,具有带有负分散体的具有正分散和模副手传输线部分的组合。与均匀传输线相比,使用级联线部分的使用为微波器件设计提供了额外的自由度,具有扩大功能和独特的性能。基于大块元件等效电池实现的右手和左手传输线的人工方式有助于最小化微波器件的尺寸。对于滤波器,可以有利地应用级联右手和左手传输线的组合,以控制各个通带的位置和宽度和更高谐波的寄生响应。讨论了可调双频带滤波器的设计,并提出了实验结果。微型可调定向耦合器也在考虑。采用基于集总元素π细胞的人造右手和左手传输线部分。为了验证理论预测,设计和实验研究了可调谐的集成元素RAT族环。半导体变容二极管已被用作可调部件。

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