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首页> 外文期刊>IEEE Transactions on Magnetics >Wave-envelope and transformation methods for finite element solution of unbounded electromagnetic wave problems
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Wave-envelope and transformation methods for finite element solution of unbounded electromagnetic wave problems

机译:无界电磁波问题的有限元求解的波包络和变换方法

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摘要

The wave-envelope (WE) method is a technique that has been applied to acoustic problems to model the unbounded domain surrounding an acoustic source. Here it is applied to electromagnetic wave problems. A key feature of the method is that it uses a change of dependent variable to remove the wave-like qualities of the solution and thereby permits the use of arbitrarily large elements in the exterior domain. This makes it possible to apply to wave problems some of the techniques developed for magnetostatics, such as transformation methods. These methods map the very large exterior domain into a smaller region which is more easily meshed. The combined wave-envelope transformation method is applied to two time-harmonic electromagnetic wave problems: radiation of a single cylindrical wave function; and scattering of an incident plane wave by a perfectly-conducting circular cylinder. In both cases the near-zone electric field is compared to the exact solution, for a range of frequencies.
机译:波包络(WE)方法是一种已应用于声学问题的技术,用于对声源周围的无界域进行建模。在这里它被应用于电磁波问题。该方法的一个关键特征是它使用因变量的变化来消除解的波动性质,从而允许在外部域中使用任意大的元素。这样就可以将某些为静磁技术开发的技术应用于波动问题,例如转换方法。这些方法将非常大的外部区域映射到更容易啮合的较小区域。组合的波包络变换方法应用于两个时谐电磁波问题:单个圆柱波函数的辐射;导电圆柱体对入射平面波的散射和散射。在这两种情况下,针对一定频率范围,将近区电场与精确解进行比较。

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