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Antenna Modeling Based on a Multiple Spherical Wave Expansion Method: Application to an Antenna Array

机译:基于多球面波扩展方法的天线建模:在天线阵列中的应用

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A method to derive an equivalent radiation source for planar antennas is presented. This method is based on spherical near-field (NF) data (measured or computed) to ascertain an equivalent set of infinitesimal dipoles placed over the main antenna aperture. These produce the same antenna radiation field, both inside and outside the minimum sphere enclosing the antenna. A spherical wave expansion (SWE) of the NF data is written in terms of infinitesimal dipoles using a transition matrix. This matrix expresses the linear relations between the transmission coefficients of the antenna and the transmission coefficients of each dipole. The antenna a priori information are used to set the spatial distribution of the equivalent dipoles. The translational and rotational addition theorems are exploited to derive the transmission coefficients of the dipoles. Once the excitation of each dipole is known, the field at any aspect angle and distance from the antenna is rapidly calculated. Computations with EM simulation data of an antenna array illustrate the reliability of the method.
机译:提出了一种推导平面天线等效辐射源的方法。此方法基于(测量或计算的)球形近场(NF)数据来确定放置在主天线孔径上的等效极小偶极子集。它们在包围天线的最小球体的内部和外部产生相同的天线辐射场。 NF数据的球面波扩展(SWE)使用转换矩阵以极小偶极子的形式编写。该矩阵表示天线的传输系数和每个偶极子的传输系数之间的线性关系。天线先验信息用于设置等效偶极子的空间分布。利用平移和旋转加法定理推导偶极子的传输系数。一旦知道了每个偶极子的激励,就可以快速计算出任何纵横比和距天线的距离的场。用天线阵列的电磁仿真数据进行的计算说明了该方法的可靠性。

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