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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >The Contour Deformation Method for Calculating the High-Frequency Scattered Field by the Fock Current on the Surface of the 3-D Convex Cylinder
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The Contour Deformation Method for Calculating the High-Frequency Scattered Field by the Fock Current on the Surface of the 3-D Convex Cylinder

机译:利用3D凸圆柱体表面的Fock电流计算高频散射场的轮廓变形方法

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摘要

In this paper, the high-frequency diffracted waves like the creeping waves are comprehensively analyzed by the Fock currents. On invoking the contour deformation method, the highly oscillatory Fock currents are efficiently calculated. Furthermore, the workload for the calculation of Fock currents is frequency-independent. To capture the high-frequency wave physics phenomenon, the Fock current is separated into the classical physical optics (PO) current and the nonuniform (NU)-Fock current along the shadow boundary and in the deep shadow region. To calculate the highly oscillatory scattered wave fields from the Fock current, quadratic approximations of the phase functions in the integrand are adopted. On invoking the numerical steepest descent path (NSDP) method, the scattered wave fields are efficiently calculated with frequency-independent computational effort and error controllable accuracy in each frequency-independent segment. Meanwhile, the high-frequency creeping wave coming from the NU-Fock current is efficiently captured by the NSDP method. Numerical results for the Fock currents, the high-frequency NU-diffracted and scattered far fields on the convex cylinders are given to validate the efficiency of the proposed method. Furthermore, the contour deformation method for computing the Fock currents offers a clear physical picture for the high-frequency wave fields on the convex scatterer.
机译:本文利用Fock电流对蠕变波等高频衍射波进行了综合分析。调用轮廓变形方法时,可以有效地计算出高度振荡的Fock电流。此外,用于计算福克电流的工作量与频率无关。为了捕获高频波物理现象,沿着阴影边界和深阴影区域,将Fock电流分为经典物理光学(PO)电流和非均匀(NU)-Fock电流。为了从福克电流计算出高度振荡的散射波场,采用了被积物中相位函数的二次近似。在调用数值最速下降路径(NSDP)方法时,可以在与频率无关的每个部分中以与频率无关的计算工作和误差可控制的精度来有效地计算散射波场。同时,通过NSDP方法可以有效捕获来自NU-Fock电流的高频蠕变波。给出了Fock电流,凸圆柱上的高频NU衍射和散射远场的数值结果,验证了该方法的有效性。此外,用于计算Fock电流的轮廓变形方法为凸散射体上的高频波场提供了清晰的物理图像。

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