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Near-Field Analysis of Electromagnetic Interactions in Antenna Arrays Through Equivalent Dipole Models

机译:通过等效偶极子模型对天线阵列中电磁相互作用的近场分析

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This paper presents an analysis of the near fields of antenna arrays using an alternative approach taking into account field variations due to mutual coupling. The method does not require solving Maxwell's equations under the customary boundary condition, but is based instead on searching for equivalent dipole models that are capable of reproducing the same radiated fields of the actual array (ideally obtained through accurate measurement.) We treat mutual coupling between array elements as essentially a multiple scattering effect and propose a method to calculate the near field of arbitrary linear arrays with significant electromagnetic coupling. It is found that a single (analytical) dipole model obtained under certain circumstances, which are detailed in the paper, can be used to predict correctly the near field radiated by arbitrary-size antenna arrays. The paper ends by developing an application of the equivalent dipole method by expanding the near fields into a sum of propagating and nonpropagating parts. It is shown that the 3-D spatial Fourier transform required in this expansion can be eliminated when the dipole model is used in computing the near field in the domain of the validity of the model.
机译:本文介绍了一种天线阵列近场的分析方法,该方法考虑了互耦造成的场变化。该方法不需要在惯常的边界条件下求解麦克斯韦方程,而是基于搜索等效偶极子模型的,该模型能够再现实际阵列的相同辐射场(理想情况下是通过精确测量获得的)。阵列元件本质上是多重散射效应,并提出了一种计算具有明显电磁耦合的任意线性阵列的近场的方法。发现在某些情况下获得的单个(解析)偶极子模型(已在本文中进行了详细介绍)可用于正确预测任意尺寸天线阵列辐射的近场。本文通过将近场扩展为传播部分和非传播部分的总和来发展等效偶极子方法的应用。结果表明,当在模型的有效性范围内将偶极子模型用于计算近场时,可以消除这种扩展所需的3-D空间傅立叶变换。

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