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首页> 外文期刊>Computational mathematics and modeling >NUMERICAL ANALYSIS OF THE INTEGRAL EQUATION METHOD FOR THE COMPUTATION OF THE ELECTROMAGNETIC FIELD IN A NONHOMOGENEOUS MEDIUM
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NUMERICAL ANALYSIS OF THE INTEGRAL EQUATION METHOD FOR THE COMPUTATION OF THE ELECTROMAGNETIC FIELD IN A NONHOMOGENEOUS MEDIUM

机译:非均匀介质中电磁场计算积分方程方法的数值分析

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摘要

The article considers mathematical modeling of the electromagnetic field in a nonhomogeneous medium by the integral equation method. The case of high-contrast conducting media is studied in detail, with the conducting nonhomogeneity embedded in a poorly conducting medium. The analysis of the integral equation, in this case, has shown that the solution deteriorates when the conducting nonhomogeneity is inside a low-conductivity layer. It is shown that this effect can be overcome by Dmitriev's method of elevated background conductivity. The contrast effect is most pronounced for the H -polarized twodimensional electromagnetic field in a nonhomogeneous medium. The numerical experiment has accordingly been conducted for this particular case. The solution computed by the integral equation method with elevated background conductivity is compared with the solution computed by the finitedifference method. The results of the two methods show excellent fit.
机译:该文章通过整体方程法考虑了非均匀介质中的电磁场的数学建模。 详细研究了高对比度导电介质的情况,其中嵌入导电介质中的导电非均匀性。 在这种情况下,对整体方程的分析表明,当导电非均匀性在低导率层内时,溶液劣化。 结果表明,Dmitriev的升高的背景电导率的方法可以克服这种效果。 对比效果对于非均匀介质中的H-散摩擦电磁场最为明显。 因此,对该特定情况进行了数值实验。 将通过具有升高的背景电导率计算的整体式方法计算的解决方案与由FinitedIfferifferfer方法计算的解决方案进行比较。 两种方法的结果表现出优异的合适。

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