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Solution of a matrix Wiener-Hopf equation connected with the plane wave diffraction by an impedance loaded parallel plate waveguide

机译:矩阵式维纳-霍夫方程的求解与通过阻抗加载的平行平板波导进行的平面波衍射连接

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A matrix Wiener-Hopf equation connected with a new canonical diffraction problem is solved explicitly. We consider the diffraction of a plane electromagnetic wave by an impedance loaded parallel plate waveguide formed by a two-part impedance plane and a parallel perfectly conducting half-plane. The representation of the solution to the boundary-value problem in terms of Fourier integrals leads to a matrix Wiener-Hopf equation. The exact solution is obtained in terms of two infinite sets of unknown coefficients satisfying two infinite systems of linear algebraic equations. These systems are solved numerically and the influence of the parameters such as the waveguide spacing and the surface impedances of the two-part plane on the diffraction phenomenon is shown graphically. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:明确地解决了与新的正则衍射问题有关的矩阵Wiener-Hopf方程。我们考虑由阻抗加载的平行板波导对平面电磁波的衍射,该阻抗加载的平行板波导由两部分阻抗平面和平行的完美导电半平面组成。用傅立叶积分表示边值问题的解会导致矩阵维纳-霍夫方程。精确解是根据满足两个无限线性代数方程组的未知系数的两个无限集获得的。对这些系统进行了数值求解,并以图形方式显示了诸如波导间距和两部分平面的表面阻抗之类的参数对衍射现象的影响。版权所有(c)2005 John Wiley&Sons,Ltd.

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