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Numerical calculation of diffraction coefficients from building edges using FDTD method

机译:用FDTD方法计算建筑物边缘衍射系数

摘要

Finite Difference Time Domain (FDTD) Method and software are applied to obtain diffraction waves from modulated Gaussian plane wave illumination for right angle wedges and Fast Fourier Transform (FFT) is used to get diffraction coefficients in a wideband in the illuminated lit region. Theta and Phi polarization in 3-dimensional, TM and TE polarization in 2-dimensional cases are considered respectively for soft and hard diffraction coefficients. Results using FDTD method of perfect electric conductor (PEC) wedge are compared with asymptotic expressions from Uniform Theory of Diffraction (UTD). Extend the PEC wedges to some homogenous conducting and dielectric building materials for diffraction coefficients that are not available analytically in practical conditions.
机译:应用有限差分时域(FDTD)方法和软件从调制的高斯平面波照明获得直角楔形物的衍射波,并使用快速傅立叶变换(FFT)来获得被照明区域中宽带的衍射系数。对于软衍射系数和硬衍射系数,分别考虑了3维的Theta和Phi极化,2维的TM和TE极化。将采用FDTD方法的完美电导体(PEC)楔形的结果与统一衍射理论(UTD)的渐近表达式进行比较。将PEC楔形物扩展到一些均匀的导电和介电建筑材料,以获得在实际条件下无法解析的衍射系数。

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    Cai Weiting;

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  • 年度 1999
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