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A comparison of high-frequency scattering determined from PO fields enhanced with alternative ILDCs

机译:由PO场确定的高频散射与其他ILDC增强后的比较

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In order to compare the accuracy of "source-based" and "diffraction-cone" incremental length diffraction coefficients (ILDCs), the high-frequency scattered far fields of a perfectly conducting circular disk are computed using physical optics (PO) enhanced with source-based and diffraction-cone ILDCs. For angles of incidence and scattering that are near grazing to the disk, the diffraction-cone ILDCs predict bistatic scattered far fields that are generally much greater than the exact far fields and that are much less accurate than the scattered far fields predicted by the source-based ILDCs. These results lead us to conclude that the source-based ILDCs are preferable for improving upon the accuracy of PO fields computed with general purpose computer codes.
机译:为了比较“基于源”和“衍射锥”增量长度衍射系数(ILDC)的精度,使用源增强的物理光学(PO)计算了完美导电圆盘的高频散射远场的和衍射锥的ILDC。对于接近圆盘的入射角和散射角,衍射锥ILDC预测双基地散射远场通常比精确远场大得多,而精确度远低于震源预测的散射远场,基于ILDC。这些结果使我们得出结论,基于源的ILDC对于提高用通用计算机代码计算的PO字段的准确性是更可取的。

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