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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Efficient full-wave characterization of microstrip lines fabricated on magnetized ferrites with arbitrarily oriented bias field
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Efficient full-wave characterization of microstrip lines fabricated on magnetized ferrites with arbitrarily oriented bias field

机译:带有任意取向偏置磁场的磁化铁氧体上制造的微带线的高效全波表征

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The spectral domain approach (SDA) is used for the full-wave determination of the propagation constant and characteristic impedance of microstrip lines fabricated on ferrite substrates with arbitrarily oriented bias magnetic field. Numerical problems arising from the numerical computation of the microstrip lines parameters for high values of the spectral variables are avoided by using asymptotically equivalent structures. The evaluation of the infinite integrals involved in the determination of the propagation constant is efficiently carried out by means of a technique based on the interpolation of the spectral dyadic Green's function. The numerical results obtained indicate that for every microstrip line fabricated on ferrite substrate there is a frequency region in which propagation is not feasible, the limits of this frequency region being strongly dependent on both the orientation and the magnitude of the bias magnetic held. Also, the authors show that for every frequency, both the propagation constant and the impedance of the microstrip lines can be adjusted over a wide range by varying the bias magnetic field magnitude. [References: 26]
机译:频谱域方法(SDA)用于全波确定在具有任意方向的偏置磁场的铁氧体衬底上制造的微带线的传播常数和特征阻抗。通过使用渐近等效结构,可以避免因微带线参数的高数值谱值数值计算而引起的数值问题。借助于基于频谱二进格林函数的插值的技术,可以有效地执行对确定传播常数所涉及的无穷积分的评估。所获得的数值结果表明,对于在铁氧体衬底上制造的每条微带线,都有一个不可行传播的频率区域,该频率区域的界限在很大程度上取决于所保持的偏置磁场的方向和大小。作者还表明,对于每个频率,微带线的传播常数和阻抗都可以通过改变偏置磁场强度在很宽的范围内进行调节。 [参考:26]

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