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A Spectral Integral Method for Smooth Multilayered Bodies of Revolution

机译:光滑多层旋转体的光谱积分方法

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摘要

A spectral integral method (SIM) is developed to solve the scattering problem from smooth multilayered bodies of revolution (BoRs). This SIM is a spectral method to improve the accuracy and efficiency of the SIM by the fast Fourier transform (FFT) algorithm. This method can achieve high accuracy and greatly reduce the computational time consumption. In our BoR-SIM, the BoR generatrix current is expanded by the truncated Fourier series. Then, the impedance matrix is generated in the spectral domain to solve the scattering problem. Unlike the conventional methods that need eight to ten segments per wavelength, in the BoR-SIM, two points per wavelength are adequate to achieve high accuracy according to the Nyquist theorem. Being accelerated by FFT, this method shows a significant efficiency advantage over the conventional BoR method. Numerical results demonstrate the accuracy and efficiency of our new method. By combining with the Poggio–Miller–Chang–Harrington–Wu–Tsai surface integral equations, this method can be used to solve many practical scattering problems.
机译:光谱积分方法(SIM)的开发是为了解决光滑多层旋转体(BoRs)的散射问题。此SIM是一种频谱方法,可通过快速傅里叶变换(FFT)算法提高SIM的准确性和效率。该方法可以达到很高的精度,并大大减少了计算时间。在我们的BoR-SIM中,截短的傅立叶级数扩展了BoR母线电流。然后,在频谱域中生成阻抗矩阵以解决散射问题。与传统方法不同,在BoR-SIM中,每个波长需要八个到十个分段,根据奈奎斯特定理,每个波长两个点足以实现高精度。通过FFT加速,该方法显示出比常规BoR方法显着的效率优势。数值结果证明了我们新方法的准确性和有效性。通过结合Poggio-Miller-Chang-Harrington-Wu-Tsai表面积分方程,此方法可用于解决许多实际的散射问题。

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