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Localized and observer-dependent importance of currents for HF scattering and reduction of unknowns in MoM

机译:电流对于HF散射和MoM中未知数的减少具有局部和与观察者相关的重要性

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摘要

The locality of high frequency diffraction is a base of various asymptotic methods such as Geometrical Theory of Diffraction (GTD). Scattering is determined by only local characteristics of a scattering point. In terms of current-based method, currents around scattering points contribute to the field and range of these currents is dependent on the point of observation. The locality is imported into the Method of Moments (MoM). A part of induced currents is extracted from currents solved by the MoM. The extracted currents can reproduce scattering field. The scattered field can be calculated by solving only local parts of the scatterer. This equivalent model can greatly reduce computational load of the MoM.
机译:高频衍射的局部性是各种渐近方法的基础,例如几何衍射理论(GTD)。散射仅由散射点的局部特征确定。就基于电流的方法而言,散射点周围的电流有助于磁场,这些电流的范围取决于观察点。位置被导入到矩量法(MoM)中。从MoM求解的电流中提取一部分感应电流。提取的电流可以再现散射场。可以通过仅解决散射体的局部部分来计算散射场。该等效模型可以大大减少MoM的计算量。

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