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Domain decomposition FDTD algorithm for the analysis of a new type of E-plane sectorial horn with aperture field distribution optimization

机译:域分解FDTD算法,用于分析新型E面扇形喇叭,具有孔径场分布优化

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摘要

In this paper, a universal and efficient approach of domain decomposition finite-difference time-domain FDTD (DD-FDTD) is presented for the analysis of a new type of horn antenna-E-plane sectorial horn with field amplitude taper and phase correction in the aperture. The power fed into the horn is redistributed to achieve the optimal field amplitude distribution in the aperture, and meanwhile the field phase is corrected by metal lens. Compared with conventional E-plane sectorial horns, the new horn antenna takes the advantages of low sidelobe level, short physical length and wide flare angle etc. Moreover, the most important property of this horn is the weak coupling with each other when it is used as the element of a phased array antenna. The field analysis of such a horn antenna is an extremely complicated three-dimensional EM boundary value problem. The domain decomposition FDTD method is presented in this paper to break through the drawback. The whole horn is decomposed into several subdomains and the meshes are created in local coordinates. In the iteration procedure of FDTD, the data are exchanged between adjacent subdomains with overlapped meshes. The aperture field distribution, voltage standing-wave ratio and pattern calculated by the DD-FDTD method are in good agreement with the experimental data.
机译:本文提出了一种通用高效的区域分解时域有限差分时域FDTD(DD-FDTD)方法,用于分析新型的具有场振幅锥化和相位校正的喇叭天线-E平面扇形喇叭。光圈。重新分配进入喇叭的功率以在光圈中获得最佳的场振幅分布,同时用金属透镜校正场相位。与传统的E平面扇形号角相比,新型号角天线具有旁瓣电平低,物理长度短,喇叭角大等优点。此外,这种号角最重要的特性是使用时彼此之间的耦合较弱。作为相控阵天线的元素。这种号角天线的场分析是极其复杂的三维EM边界值问题。本文提出了域分解FDTD方法来克服这一缺点。整个角被分解为几个子域,并在局部坐标中创建网格。在FDTD的迭代过程中,数据在具有重叠网格的相邻子域之间交换。 DD-FDTD法计算得到的孔径场分布,电压驻波比和方向图与实验数据吻合良好。

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