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On the Control of Edge Diffraction in Numerical Rough Surface Scattering Using Resistive Tapering

机译:用电阻锥形控制粗糙表面数值散射中的边缘衍射控制

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The use of resistive loading to remove edge effects in electromagnetic scattering from rough surfaces with finite conductivity has been considered. An electric field integral equation formulation using impedance boundary conditions was implemented to model the conductivity of sea water at X band. The resistive loading was added over surface sections within three wavelengths of the modeled edges. A resistive taper synthesized to control the sidelobe level in scattering from flat, perfectly conducting plates proved better able to reduce edge diffraction than a power-law taper of a type that is often used. The calculated scattering from test profiles that model breaking water waves using the resistive loading show good agreement with those found using a reference scattering approach provided that the local grazing angle on the loaded surface section is greater than 20°.
机译:已经考虑使用电阻负载来消除具有有限电导率的粗糙表面在电磁散射中的边缘效应。实施了使用阻抗边界条件的电场积分方程公式化,以模拟X波段海水的电导率。在建模边缘的三个波长范围内的表面部分上添加了电阻负载。事实证明,与平时使用的幂律锥相比,合成的电阻锥能够控制平坦的,完美导电的板的散射中的旁瓣电平,能够更好地减少边缘衍射。从测试剖面中计算出的散射,该模拟使用电阻性载荷对破裂的水波进行建模,只要载荷表面部分的局部掠射角大于20°,则与使用参考散射法发现的散射曲线具有良好的一致性。

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