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首页> 外文期刊>IEEE Transactions on Magnetics >Polarization dependence on electromagnetic scattering of perfectly conducting concave corners by magnetic field integral equations
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Polarization dependence on electromagnetic scattering of perfectly conducting concave corners by magnetic field integral equations

机译:磁场积分方程对完全导电凹角电磁散射的极化依赖性

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摘要

The magnetic field integral equation formulation is used for both horizontally and vertically polarized incident waves. The method of moments together with the conjugate gradient solution technique, is then implemented on a personal computer to solve the induced current on the conductor surfaces and the far-field scattering coefficients. Numerical computations are executed for a conductor of L shape. The induced current near the concave corner is compared with that near the convex corner for both polarizations. Also presented are the polarization dependences on backscattering coefficients of the L conductor for various frequencies and incident angles.
机译:磁场积分方程公式用于水平和垂直极化的入射波。然后将矩量方法与共轭梯度解技术一起在个人计算机上实现,以解决导体表面上的感应电流和远场散射系数。对L形导体执行数值计算。对于两种极化,将凹角附近的感应电流与凸角附近的感应电流进行比较。还提出了对于各种频率和入射角,极化对L导体的反向散射系数的依赖性。

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