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High-efficiency numerical computing in low-grazing scattering from sea surface using resistive tapering and forward-backward method

机译:阻力递减和向前-向后方法对海面低吃水散射的高效数值计算

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The application of tapered resistive sheet with a incident plane wave to remove edge effects and to reduce the surface length at low-grazing angle in electromagnetic scattering from sea surfaces with finite conductivity has been considered. The use of the forward-backward method that has shown a very fast convergence and sufficiently accurate results, made it computationally effective. The integral equation formulations using impedance boundary condition was used to model the conductivity of sea surface. The combination of the resistive loading technology and the forward-backward method increasingly improved the computational efficiency and made it possible to calculate rapidly sea surface electromagnetic scattering at low grazing angle through the low-frequency method.
机译:已经考虑将锥形电阻片与入射平面波一起使用,以消除边缘效应并减小在低掠角下从有限电导率的海面电磁散射中的表面长度。已经显示出非常快的收敛性和足够准确的结果的向前-向后方法的使用使其在计算上有效。使用阻抗边界条件的积分方程公式模拟了海面电导率。电阻加载技术和前向后方法的结合逐渐提高了计算效率,并使得通过低频方法以低掠角快速计算海面电磁散射成为可能。

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