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Efficient Modeling of Transmission Lines With Electromagnetic Wave Coupling by Using the Finite Difference Quadrature Method

机译:有限差分求积法有效建模电磁波耦合传输线

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This paper proposes an efficient numerical technique, called the finite difference quadrature (FDQ) method, to model the transmission line with radiated electromagnetic (EM) wave noise coupling. A discrete modeling approach, the FDQ method adapts coarse grid points along the transmission line to compute the finite difference between adjacent grid points. A global approximation scheme is formulated in the form of a weighted sum of quantities beyond the local grid points. Unlike the Gaussian quadrature method that computes numerical integrals by using global approximation framework, the FDQ method uses a global quadrature method to construct the approximation schemes for the computation of, however, numerical finite differences. As a global approximation technique, the FDQ method has superior numerical dispersion to the finite difference (FD) method, and, therefore, needs much sparser grid points than the FD method to achieve comparable accuracy. Equivalent voltage and current sources are derived, exciting the transmission line at the grid points. Equivalent circuit models are consequently derived to represent the transmission line subject to radiated electromagnetic wave noise. The FDQ-based equivalent models can be integrated into a simulator like SPICE.
机译:本文提出了一种有效的数值技术,称为有限差分正交(FDQ)方法,以辐射电磁波(EM)噪声耦合的传输线建模。 FDQ方法是一种离散建模方法,它沿传输线调整粗网格点,以计算相邻网格点之间的有限差。全局近似方案以超出本地网格点的数量的加权总和的形式制定。与通过使用全局逼近框架来计算数值积分的高斯正交方法不同,FDQ方法使用全局正交方法来构造用于计算有限差分的逼近方案。作为一种全局近似技术,FDQ方法的数值分散性优于FD(有限差分)方法,因此,与FD方法相比,FDQ方法需要更稀疏的网格点,以实现可比的精度。得出等效的电压和电流源,在电网点激励传输线。因此,得出等效电路模型以表示传输线受到电磁辐射噪声的影响。基于FDQ的等效模型可以集成到类似SPICE的模拟器中。

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