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Reducing computational workload of physical optics scattered fields from quadratic surfaces by the numerical steepest descent path method

机译:数值最速下降路径法减少二次曲面物理光学散射场的计算量

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In this paper, we propose the numerical steepest descent path (NSDP) method on the complex plane to solve the physical optics (PO) scattered fields from the electrically large quadratic patches. The phase behaviors of PO integrands depict elliptic and hyperbolic on the parabolic and saddle quadratic patches, respectively. On invoking the NSDP method, the contour paths of the surface PO integral are transformed to the NSDPs on the complex plane. Numerical examples for the PO scattered fields from saddle surfaces illustrate that the NSDP method for solving PO scattered fields achieves frequency independent computational effort and error controllable accuracy.
机译:在本文中,我们提出了一种在复杂平面上的数值最速下降路径(NSDP)方法,以解决电大的二次斑块中的物理光学(PO)散射场。 PO积分的相行为分别描绘了抛物线形和鞍形二次曲面上的椭圆和双曲线。调用NSDP方法时,表面PO积分的轮廓路径将转换为复杂平面上的NSDP。鞍面PO散射场的数值算例表明,求解PO散射场的NSDP方法实现了频率无关的计算工作和误差可控的精度。

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