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Antenna model for conformal array performance prediction

机译:保形阵列性能预测的天线模型

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摘要

A physical modeling method for the calculation of characteristic electromagnetic parameters of small conformal arrays is presented. The antenna array model is based on the interaction between special antenna elements composed of electrically small dipoles and loop antennas. It allows for the approximate calculation of mutual coupling effects inside the antenna array. While some system aspects (such as subarray structures, T/R-module quantization, bandwidth, driving point impedance etc.) are taken into account, the numerical complexity of exact EM modeling software (e.g. integral equation methods) is avoided. Of special interest with respect, to SMART antenna structures are investigations on array bandwidth and influences of static deformations on array performance: Array performance over an increased frequency range is studied. Static deformations of the array may occur in airborne; applications and can cause element dislocation and disorientation. As an effect, the resulting array far field pattern is distorted. In both cases compensation is (at least partially) possible using adapted array coefficients. The results of these calculations lead to the conclusion that in SMART antenna systems the array excitation coefficients need to be modified to increase array bandwidth and to compensate for static deformations.
机译:提出了一种物理建模方法,用于计算小型共形阵列的特征电磁参数。天线阵列模型基于由小电偶极子组成的特殊天线元件与环形天线之间的相互作用。它允许近似计算天线阵列内部的互耦合效应。尽管考虑了某些系统方面(例如子阵列结构,T / R模块量化,带宽,驱动点阻抗等),但避免了精确EM建模软件(例如积分方程方法)的数值复杂性。关于SMART天线结构,特别有趣的是研究阵列带宽以及静态变形对阵列性能的影响:研究了在增加的频率范围内的阵列性能。阵列的静态变形可能会在空中传播。应用,并可能导致元素错位和定向。结果,所得的阵列远场图案失真。在两种情况下,使用适配的阵列系数都可以(至少部分地)进行补偿。这些计算结果得出结论:在SMART天线系统中,需要修改阵列激励系数以增加阵列带宽并补偿静态变形。

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