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A Modified Fast Far Field Approximation for Improving Speed and Accuracy in Electromagnetic Scattering Computationsa

机译:一种改进的快速远场近似,可提高电磁散射计算的速度和精度a

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The conventional fast far field approximation achieves its acceleration by dividing elements into groups and decomposing the conventional matrix-vector product into aggregation, translation, and disaggregation operations. However, conventional formulation of these operators neglects the distances between centroids of individual elements and their groups in the large argument approximation of the Hankel function, which compromises the accuracy of the technique. A method is described in this paper for retaining these quantities in the formulation, thereby increasing speed and accuracy relative to the conventional formulation. Results show that applying the correction factor to the problem of scattering from two dimensional conducting contours has the effect of decreasing peak error, RMS error, and computation time for all test cases
机译:常规的快速远场近似通过将元素划分为组并将常规的矩阵矢量乘积分解为聚合,平移和分解操作来实现其加速。但是,在汉克尔函数的大自变量近似中,这些算子的常规公式忽略了单个元素的质心与其组之间的距离,这损害了该技术的准确性。本文描述了一种将这些量保留在配方中的方法,从而相对于常规配方提高了速度和准确性。结果表明,将校正因子应用于二维导电轮廓的散射问题,可以降低所有测试用例的峰值误差,RMS误差和计算时间

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