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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Electric Field Integral Equations for Electromagnetic Scattering Problems With Electrically Small and Electrically Large Regions
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Electric Field Integral Equations for Electromagnetic Scattering Problems With Electrically Small and Electrically Large Regions

机译:电区域和小区域的电磁散射问题的电场积分方程

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摘要

Numerically stable electric field integral equations (EFIE) are presented for electromagnetic scattering problems that may include both electrically small geometrically complex and electrically large regions. A reduced integrand is achieved by implementing quasi-static assumptions in the electrically small regions, full-wave methods in the electrically large regions, and applying appropriate coupling relations between the regions. Use of the method provides computational efficiency as well as insight into the conditions under which the electromagnetic fields within electrically small regions of the problem can be assumed to be primarily capacitive or inductive in nature. The theoretical development of the method is highlighted in this communication and then applied to examples of electrically small, inductively-loaded, and capacitively-loaded monopole antennas. The accuracy of the results is verified with two independent methods.
机译:对于电磁散射问题,提出了数值稳定的电场积分方程(EFIE),该电磁散射问题可能包括电小的几何复杂区域和电大的区域。通过在电小区域中实现准静态假设,在电大区域中实现全波方法,并在区域之间应用适当的耦合关系,可以实现减少积分数的目的。该方法的使用提供了计算效率,并深入了解了可以认为问题的电气小区域内的电磁场本质上主要是电容性或电感性的条件。在本通讯中着重介绍了该方法的理论发展,然后将其应用于电小型,电感负载和电容负载的单极天线的示例。通过两种独立的方法验证了结果的准确性。

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