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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Plane Wave Scattering and Absorption by Flat Gratings of Impedance Strips
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Plane Wave Scattering and Absorption by Flat Gratings of Impedance Strips

机译:阻抗带平坦光栅对平面波的散射和吸收

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The problem of the plane wave scattering by a flat impedance-strip grating located in free space is considered. The formulation involves a set of generalized boundary conditions relating limiting values of the fields to effective electric and magnetic currents. We develop an accurate numerical solution to this problem using the dual series equations and the method of analytical regularization (MAR) based on the main part inversion. This guarantees a fast convergence and controlled accuracy of computations. Reflected, transmitted, and absorbed power fractions as a function of the frequency and the grating parameters are analyzed. Sharp resonances are revealed in the H-polarized scattering near to the grazing of the higher-order modes; these resonances are absent for the perfect electrically conducting strip grating. Low-frequency asymptotics for the reflectance and transmittance in the single-mode regime are presented and compared with numerical solutions.
机译:考虑了位于自由空间中的平坦阻抗带光栅对平面波的散射问题。该公式涉及一组广义的边界条件,这些条件将磁场的极限值与有效的电流和磁电流相关联。我们使用对偶级数方程和基于主要部分反演的解析正则化(MAR)方法,开发了对此问题的精确数值解决方案。这保证了快速收敛和受控的计算精度。分析反射,透射和吸收的功率分数随频率和光栅参数的变化。在接近高阶模的掠射的H偏振散射中显示出尖锐的共振。完美的导电条形光栅不存在这些共振。给出了单模态下反射率和透射率的低频渐近线,并与数值解进行了比较。

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