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Compact Parameterized Black-Box Modeling via Fourier-Rational Approximations

机译:通过傅立叶比近似进行参数化黑盒建模

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We present a novel black-box modeling approach for frequency responses that depend on additional parameters with periodic behavior. The methodology is appropriate for representing with compact low-order equivalent models the behavior of electromagnetic systems observed at well-defined ports and/or locations, including dependence on geometrical parameters with rotational symmetry. Examples can be polarization or incidence angles of a plane wave, or stirrer rotation in reverberation chambers. The proposed approach is based on fitting a Fourier-rational model to sampled frequency responses, where frequency dependence is represented through rational functions and parameter dependence through a Fourier series. Several examples from different applications are used to validate and demonstrate the approach.
机译:我们提出一种新颖的黑匣子建模方法,用于频率响应,该响应取决于具有周期性行为的其他参数。该方法适合于用紧凑的低阶等效模型表示在定义明确的端口和/或位置观察到的电磁系统的行为,包括对具有旋转对称性的几何参数的依赖。示例可以是平面波的极化角或入射角,或在混响室中的搅拌器旋转。所提出的方法是基于将傅里叶-理性模型拟合到采样的频率响应,其中频率相关性通过有理函数表示,参数相关性通过傅立叶级数表示。来自不同应用程序的几个示例用于验证和演示该方法。

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