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Coupling prediction of HF antennas mounted on helicopter structures using the NEC code

机译:使用NEC代码对直升机结构上安装的HF天线的耦合预测

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The moment method-based NEC code is a well-known and widely-used low frequency code. We apply the NEC code to complex structures at high frequencies. At HF, the electrical size of the structural elements become very small, compared to the wavelength. Moreover, these small elements are necessary to represent the geometrical complexity of a structure so that they cannot be ignored in geometry modeling. Thus, at HF, the NEC code has to deal with electrically small elements near its lower limits, which requires careful geometry modeling to minimize numerical inaccuracy. In addition, the prediction of antenna coupling involves near-field calculations that need extra care during the computation process. We discuss geometry modeling guidelines for complex structures. Using these rules, model two HF antennas mounted on an Apache helicopter airframe. We then analyze the coupling effects between the two antennas in terms of radiation patterns, maximum coupling factors and input impedance.
机译:基于方法的NEC代码是一种众所周知和广泛使用的低频码。我们将NEC代码应用于高频的复杂结构。在HF,与波长相比,结构元件的电尺寸变得非常小。此外,这些小元素是表示结构的几何复杂性所必需的,从而在几何建模中不能被忽略。因此,在HF处,NEC码必须处理附近其下限的电小元素,这需要仔细的几何模型以最小化数值不准确。另外,天线耦合的预测涉及在计算过程中需要额外注意的近场计算。我们讨论复杂结构的几何建模指南。使用这些规则,模型安装在Apache直升机机身上的两个HF天线。然后,我们根据辐射图案,最大耦合因子和输入阻抗来分析两个天线之间的耦合效应。

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