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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Closed-Form Jones Matrix of Dual-Polarized Inverted-Vee Dipole Antennas Over Lossy Ground
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Closed-Form Jones Matrix of Dual-Polarized Inverted-Vee Dipole Antennas Over Lossy Ground

机译:有损地面上双极化倒V型偶极天线的闭式琼斯矩阵

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摘要

This paper presents a closed-form expression for the Jones matrix of a dual-polarized inverted-vee dipole antenna based on the Lorentz reciprocity theorem and the basic rules of electromagnetic refraction. The expression is used to determine the intrinsic cross-polarization ratio (IXR) as a function of droop angle, position of the source in the sky, antenna height, frequency, and reflection coefficient of the underlying ground. The expression is verified using full-wave simulations with a method-of-moments solver, showing very good agreement. It explains the increase in the IXR when the antenna is placed over a perfect electric ground plane. This result is used to explain the polarization properties of the Square Kilometre Array Log-periodic Antenna. Through the LOw-Frequency ARray Low-Band Antenna (LOFAR-LBA), the importance of the size of the ground plane is explained. Finally, design consideration for high polarization purity antennas is discussed.
机译:本文基于洛伦兹互易性定理和电磁折射的基本原理,给出了双极化倒V型偶极子天线琼斯矩阵的闭合形式。该表达式用于确定固有的交叉极化率(IXR),该函数是下垂角,源在天空中的位置,天线高度,频率以及下面地面的反射系数的函数。使用全波仿真和矩量法求解器验证了该表达式,显示出很好的一致性。它解释了将天线放在理想的电气接地平面上时IXR的增加。该结果用于解释平方公里阵列对数周期天线的极化特性。通过低频Array低频段天线(LOFAR-LBA),说明了接地平面尺寸的重要性。最后,讨论了高极化纯度天线的设计考虑。

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