A collective uniform geometrical theory of diffraction ray field analysis of very long and narrow finite planar arrays

P. Pathak, H. Chou
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Abstract

An analytical development is presented for efficiently describing the electromagnetic (EM) fields radiated by very long but narrow finite rectangular planar arrays, which radiate in the presence of a planar perfectly conducting surface of infinite or large finite extent. A uniform geometrical theory of diffraction (UTD) solution is obtained which expresses, in a collective fashion, the fields emanating from each row of the antenna array elements, which propagate along three basic rays, namely one from each of the two ends of each row, and one from within the interior point on each row. Such a row by row field summation based description greatly simplifies the solution in contrast to conventional array element by element field summation method. Furthermore, this collective UTD ray field description provides a simple physical picture for array radiation mechanisms, which is generally absent in other methods of solution. The application of this work is to the rapid analysis of electronically scanned, very long, but narrow arrays which can produce an extremely sharp beam in the plane confining the array axis (along the long array dimension) and the normal to the array face.
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超长和窄有限平面阵列衍射射线场分析的集体均匀几何理论
本文提出了一种有效描述极长而窄的有限矩形平面阵列辐射电磁场的解析发展,这种阵列在无限或大有限范围的完美导电平面存在下辐射。得到了衍射的统一几何理论(UTD)解,它以一种集体的方式表达了从天线阵列单元的每一行发出的场,这些场沿着三条基本射线传播,即一条来自每一行的两端,另一条来自每一行的内部点。与传统的阵列逐元素字段求和方法相比,这种基于逐行字段求和的描述大大简化了求解过程。此外,这种集体UTD射线场描述为阵列辐射机制提供了一个简单的物理图像,这在其他解决方法中通常是不存在的。这项工作的应用是对电子扫描的,很长,但狭窄的阵列的快速分析,可以在阵列轴(沿着长阵列尺寸)和阵列面法线的平面上产生非常尖锐的光束。
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