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Asymmetrical Impedance Inverter for Quasi-Optical Bandpass Filters With Transmission Lines of Fixed Length

机译:具有固定长度传输线的准光学带通滤波器的非对称阻抗反相器

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Quasi-optical (QO) filter design is commonly based on the direct coupled bandpass filter topology with distributed resonator elements. Conventionally, prototypes with symmetrical impedance inverters are employed during synthesis, and as a result, this leads to resonators with custom lengths across the filter. This can be impractical from a QO filter implementation perspective, since spacers of arbitrary thickness may not be readily available. In this paper, we propose a novel impedance inverter equivalent network, which allows the development of prototypes where transmission lines across the filter structure to have predefined fixed lengths. Based on this technique, we developed a fourth-order QO filter prototype that composed of 2-D periodic arrays with subwavelength features. Its performance is verified with free-space measurement, and the measured results show good agreement with both full-wave and circuit simulation. Thus, it is shown that the proposed impedance inverter circuit can simplify the implementation of QO filters of higher order.
机译:准光学(QO)滤波器设计通常基于具有分布式谐振器元件的直接耦合带通滤波器拓扑。常规上,在合成过程中使用带有对称阻抗反相器的原型,因此,这会导致谐振器在滤波器上具有定制的长度。从QO滤波器的实现角度来看,这可能是不切实际的,因为任意厚度的间隔物可能都不容易获得。在本文中,我们提出了一种新型的阻抗逆变器等效网络,该网络可以开发原型,其中跨越滤波器结构的传输线具有预定的固定长度。基于此技术,我们开发了由具有亚波长特征的二维周期阵列组成的四阶QO滤波器原型。它的性能已通过自由空间测量得到验证,并且测量结果与全波和电路仿真均显示出良好的一致性。因此,表明所提出的阻抗反相器电路可以简化高阶QO滤波器的实现。

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