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On the boundary diffraction wave method for the analytical prediction of the radiation from large planar phased array antennas

机译:边界衍射波法用于大型平面相控阵天线辐射的分析预测

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摘要

A boundary diffraction wave (BDW) formulation is developed for predicting the collective radiation from large finite planar phased array antennas in a relatively efficient manner. This collective radiation is described in terms of a set of Floquet waves (FWs) arising from the array interior, together with the diffraction of these FWs by the finite array element truncation boundary; the latter is represented by a line integral of the incremental diffracted field over this boundary. In general, the BDW line integral must be evaluated numerically. The current distribution over the whole array is first obtained, for a given excitation, by full wave numerical methods. A traveling wave expansion is employed to represent the array distribution so as to facilitate the development of the BDW solution for arrays. Some numerical results based on the BDW are presented to demonstrate the utility and accuracy of the method for analyzing large planar arrays.
机译:开发了边界衍射波(BDW)公式,以相对有效的方式预测来自大型有限平面相控阵天线的总辐射。用从阵列内部产生的一组浮波(FW)以及有限阵列元素截断边界对这些FW的衍射来描述这种集体辐射。后者由边界上增量衍射场的线积分表示。通常,必须以数字方式评估BDW线积分。对于给定的激励,首先通过全波数值方法获得整个阵列上的电流分布。采用行波扩展来表示阵列分布,以便于开发用于阵列的BDW解决方案。提出了一些基于BDW的数值结果,以证明该方法用于大型平面阵列分析的实用性和准确性。

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