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Efficient time-domain analysis of highly dispersive linear and non-linear metamaterial waveguide and antenna structures operated in the impulse-regime

机译:在脉冲状态下工作的高度分散的线性和非线性超材料波导和天线结构的高效时域分析

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摘要

A numerical method is proposed for the analysis of highly dispersive linear and non-linear metamaterial structures. Firstly, pulse propagation along non-linear composite right/left-handed (CRLH) transmission line (TL) is studied. The dispersive CRLH line is loaded with hyper-abrupt diodes to achieve non-linearity. The characteristic impedance and propagation constant of each unit-cell of the CRLH TL is varied at each time-step, and the nonuniform line is then analysed. A novel interpolation scheme, based on the smooth behaviour of the propagation constant with small variations of the shunt capacitor is proposed. Numerical results show that high accuracy and up to 80% reduction of the computational cost is achieved. A general example which combines dispersion and nonlinearity is presented, validated and discussed. Secondly, the impulse-regime radiation of a leaky-wave antenna is analysed and used to describe a real-time spectrogram analyser (RTSA). A new calibration method for the system, which takes into account the directivity variation of the antenna with frequency, is proposed. This method provides an extremely fast and accurate tool to characterise the behaviour of leaky-wave-based RTSA systems.
机译:提出了一种数值方法来分析高度分散的线性和非线性超材料结构。首先,研究了沿非线性复合右手/左手(CRLH)传输线(TL)的脉冲传播。分散的CRLH线路装有超突变二极管,以实现非线性。 CRLH TL的每个单位单元的特性阻抗和传播常数在每个时间步长都发生变化,然后分析不均匀线。提出了一种新的插值方案,该方案基于传输常数的平滑特性,并带有较小的并联电容器变化。数值结果表明,该算法可实现高精度并最多减少80%的计算成本。提出,验证和讨论了一个结合色散和非线性的一般示例。其次,分析了漏波天线的脉冲态辐射,并将其用于描述实时频谱图分析仪(RTSA)。提出了一种新的系统标定方法,该方法考虑了天线方向性随频率的变化。该方法提供了一种非常快速和准确的工具来表征基于泄漏波的RTSA系统的行为。

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