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Fast Calculation of Wideband RCS of Objects by Combining Improved Ultra-wide Band Characteristic Basis Function Method and AWE Technique

机译:通过组合改进的超宽频段特征基功能方法和AWE技术快速计算物体的宽带RCS

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When improved ultra-wide band characteristic basis function method (IUCBFM) is used to calculate wideband radar cross section (RCS) of objects, the reduced matrix at each frequency point need to be reconstructed, which is very time-consuming. To solve this problem, an effective numerical method to fast calculate wideband RCS of objects by combining IUCBFM and asymptotic waveform evaluation (AWE) technique is proposed. The improved ultra-wide band characteristic basis functions can be reused at each interpolation points, so it can save the time of generating the characteristic basis functions. Moreover, to avoid the reduced matrix reconstruction at each frequency point, IUCBFM is combined with the AWE technique to fast predict the surface current at any frequency point in the to-be-solved frequency band and further realize the fast calculation of wideband RCS of objects. Compared with traditional IUCBFM, the method in this paper significantly improves the efficiency. Furthermore, the numerical calculation results have proved its precision and validity.
机译:当改进的超宽带特性基函数方法(IUCBFM)用于计算物体的宽带雷达横截面(RCS)时,需要重建每个频率点处的减小的矩阵,这非常耗时。为了解决这个问题,提出了一种通过组合IUCBFM和渐近波形评估(AWE)技术来快速计算物体宽带RCS的有效数值方法。改进的超宽带特性基函数可以在每个插值点重复使用,因此它可以节省生成特征基功能的时间。此外,为了避免每个频率点处的矩阵重建减小,IUCBFM与AWE技术组合以快速预测到待解决的频带中的任何频率点处的表面电流,并进一步实现对象的宽带RC的快速计算。与传统的IUCBFM相比,本文中的方法显着提高了效率。此外,数值计算结果证明了其精度和有效性。

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