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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Differential covariant formalism for solving Maxwell's equations in curvilinear coordinates: oblique scattering from lossy periodic surfaces
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Differential covariant formalism for solving Maxwell's equations in curvilinear coordinates: oblique scattering from lossy periodic surfaces

机译:求解曲线坐标中麦克斯韦方程组的微分协变形式:有损周期表面的斜向散射

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A rigorous differential method describing the diffraction properties of lossy periodic surfaces is presented. A nonorthogonal coordinate system and a covariant formalism of Maxwell's equation are used simplifying boundary conditions expression. Only one eigenvalue system, unique for the TE and TM polarizations even for an oblique incidence, needs to be solved. Thus the numerical treatment is very efficient and CPU requirements significantly reduced. Numerical results are successfully compared with those obtained by an integral method using the boundary element method (BEM) as a numerical procedure.
机译:提出了一种严格的微分方法,描述了有损耗周期表面的衍射特性。使用非正交坐标系和麦克斯韦方程的协变形式来简化边界条件表达式。仅需要解决一个特征值系统,该特征值系统对于TE和TM极化是唯一的,即使对于倾斜入射也是如此。因此,数值处理非常有效,并且大大降低了CPU需求。将数值结果与使用边界元法(BEM)作为数值程序的积分方法获得的结果进行了成功比较。

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