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Analysis of finite arrays of axially directed printed dipoles on electrically large circular cylinders

机译:电大圆柱体上轴向印刷偶极子的有限阵列分析

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摘要

Various arrays consisting of finite number of printed dipoles on electrically large dielectric coated circular cylinders are investigated using a hybrid method of moments/Green's function technique in the spatial domain. This is basically an "element by element" approach in which the mutual coupling between dipoles through space as well as surface waves is incorporated. The efficiency of the method comes from the computation of the Green's function, where three types of spatial domain Green's function representations are used interchangeably, based on their computational efficiency and regions where they remain accurate. Numerical results are presented in the form of array current distributions, active reflection coefficient and far-field pattern to indicate the efficiency and accuracy of the method. Furthermore, these results are compared with similar results obtained from finite arrays of printed dipoles on grounded planar dielectric slabs. It is shown that planar approximations, except for small separations, can not be used due to the mutual coupling between the array elements. Consequently, basic performance metrics of printed dipole arrays on coated cylinders show significant discrepancies when compared to their planar counterparts. © 2004 IEEE.
机译:在空间域中使用矩量/格林函数技术的混合方法研究了由电大介电涂层圆柱体上有限数量的印刷偶极子组成的各种阵列。这基本上是一种“逐个元素”的方法,其中结合了偶极子通过空间以及表面波之间的相互耦合。该方法的效率来自格林函数的计算,其中三种类型的空间域格林函数表示形式基于它们的计算效率和保持准确的区域而互换使用。数值结果以阵列电流分布,有源反射系数和远场模式的形式给出,以表明该方法的效率和准确性。此外,将这些结果与从接地平面电介质板上的印刷偶极子的有限阵列获得的类似结果进行了比较。结果表明,由于阵列元件之间的相互耦合,除了很小的间距外,不能使用平面近似。因此,与平面印刷版相比,涂布圆柱体上印刷偶极子阵列的基本性能指标显示出显着差异。 ©2004 IEEE。

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