• Forward electromagnetic scattering by buried objects is computed with the integral equation method and efficient algorithm for half-space dyadic Green's functions.

    利用积分方程方法以及半空间格林函数快速算法埋地目标体矢量电磁散射进行正演计算。

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  • There are two methods according to equation form in electromagnetic scattering numerical analysis: one is integral equation method, the other is differential equation method.

    电磁散射数值分析方法根据方程形式可分为两种积分方程一种是微分方程法。

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  • The integral expressions for scattered fields including the second-order scattering terms are given based on the reciprocity theorem.

    互易原理基础得到了计入相邻目标散射散射积分表达式

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  • The integral equation is widely applied to analyze the electromagnetic scattering of dielectric objects for its high precision.

    积分方程方法由于求解严格、计算结果精度高,成为了分析介质目标电磁散射特性主要方法。

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  • In order to calculate the coulomb potential scattering, the path integral is investiged in momentum space.

    合理的近似下,通过在动量表象中计算路径积分较为方便地求出了。

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  • Electromagnetic scattering numerical analysis generally contains differential equation method and integral equation method.

    电磁散射数值分析一般分为微分方程积分方程法。

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  • Combining the wavenumber integral model and virtual source method, a software for 3d scattering field from the buried target was developed.

    基于积分声场模型方法,开发计算海底掩埋物体散射声场模型软件

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  • Secondly, the surface integral equation(SIE) is presented to calculate the electromagnetic scattering characteristics from the homogeneous dielectric targets.

    其次本文基于面积分方程,研究了均匀介质目标电磁散射

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  • In this paper, the time domain integral equation method (TDIE) and its application for transient scattering of arbitrarily shaped 3d conducting objects are studied.

    本文研究了用于分析目标瞬态电磁散射特性时域积分方程方法

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  • Classically, the solution of boundary value problems associated with electromagnetic radiation and scattering phenomena may be reduced to the integral equation.

    电磁场的边问题可以转化积分方程来处理。

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  • Furthermore, an integral equation in transformed filed, which suited to calculate the instantaneous elastic wave scattering by a number of irregular scatterers embedded in an elastic body is derived.

    在此基础推导适合瞬态弹性对异质体散射求解变换域位移场积分方程

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  • Adaptive integral method (AIM) is employed to fast compute the radiation and scattering properties of electrical large-scale structures.

    研究了自适应积分方法(AIM)在计算电大尺寸目标特性中的应用。

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  • In this thesis, the research work is based on efficient integral equations for electromagnetic scattering property of dielectric materials.

    本文主要围绕介质目标电磁散射特性高效积分方程开展研究工作

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  • Integral equation method is used to calculate the scattering of the surface waves in chapter 5. Different from the chapter 4, this method can handle the situation of the point sources.

    第五章采积分方程研究面散射,和第四章不同在于,我们利用方法可以分析三维非均匀体对不同点源激发波的散射。

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  • Integral equation method is used to calculate the scattering of the surface waves in chapter 5. Different from the chapter 4, this method can handle the situation of the point sources.

    第五章采积分方程研究面散射,和第四章不同在于,我们利用方法可以分析三维非均匀体对不同点源激发波的散射。

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