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A Modal-Based Iterative Circuit Model for the Analysis of CRLH Leaky-Wave Antennas Comprising Periodically Loaded PPW

机译:基于模态的迭代电路模型,用于分析周期性加载PPW的CRLH漏波天线

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摘要

A novel modal-based iterative circuit model is described for the calculation of the complex propagation constant of mushroom-like parallel-plate composite right/left handed leaky-wave antennas (PPW CRLH LWAs). The conventional lossless CRLH unit cell circuit is modified in order to consider the electromagnetic coupling to free space through a slot. For this purpose, a slot equivalent radiative structure, based on phased-array theory, is analyzed using a mode matching approach combined with Floquet's theorem. A direct correspondence between lumped elements and this radiative structure is found, leading to a frequency-dependent unit cell circuit model. A quickly converging iterative algorithm is then employed to determine the final element values of the unit cell. The proposed method is accurate, and it takes into account the structure physical dimensions. It also allows to obtain a balanced CRLH unit cell design without requiring any full-wave simulation, is several orders of magnitude faster than full-wave simulations, and provides a deep insight into the physics of the antenna radiation mechanism.
机译:描述了一种新颖的基于模态的迭代电路模型,用于计算蘑菇状平行板复合右/左手泄漏波天线(PPW CRLH LWA)的复数传播常数。修改了常规的无损CRLH单元电池电路,以考虑通过缝隙与自由空间的电磁耦合。为此,使用模式匹配方法结合Floquet定理,分析了基于相控阵理论的缝隙等效辐射结构。找到集总元件与这种辐射结构之间的直接对应关系,从而得出频率相关的单位单元电路模型。然后采用快速收敛的迭代算法来确定单位单元的最终元素值。所提出的方法是准确的,并且考虑了结构的物理尺寸。它还无需任何全波仿真就可以实现平衡的CRLH晶胞设计,比全波仿真快几个数量级,并且可以深入了解天线辐射机制的物理原理。

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