Design and Analysis of Cross Cage Dipole Antenna

M.I. Ahmad, M.M. Ahmed, I. Shah
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引用次数: 4

Abstract

In this paper a numerical and analytical approach has been presented for the theoretical design and practical characterization of a wired cross cage dipole antenna. Using thin wire approximations a model for current distribution has been proposed that provides rapid solution convergence. Radiated far fields have been evolved using the current distribution which in result provides radiation intensity and gain. Based on the modeling, the antenna has been designed, using simulation tools, to determine the optimized values for wires in a cage, gain dependency over wires, cage diameter and end tilt angle (ETA) through number of experiments to achieve maximum gain and minimum deviation in the magnitude of impedance and phase of the cross cage dipole antenna. At the end of this paper practical results are presented through characterization of cross cage dipole antenna. A phasing line technique has been introduced to achieve a bandwidth of 17 MHz with a band center 51.5 MHz. The test results attained, i.e. 50 Omega characteristic impedance and nearly isotropic radiation pattern of the two models shows the certification of design results
交叉笼型偶极天线的设计与分析
本文提出了一种有线交叉笼偶极子天线的理论设计和实际特性的数值分析方法。利用细线近似提出了一种电流分布模型,该模型提供了快速的解收敛性。利用电流分布对辐射远场进行了演化,从而提供了辐射强度和增益。在建模的基础上,利用仿真工具对天线进行了设计,通过多次实验确定了笼内导线、导线增益依赖关系、笼直径和端倾角(ETA)的最优值,以实现交叉笼偶极子天线的阻抗和相位幅值的最大增益和最小偏差。最后,通过对交叉笼型偶极子天线的表征,给出了实验结果。介绍了一种相位线技术,实现了17 MHz的带宽和51.5 MHz的频带中心。测试结果表明,两种型号的特性阻抗均为50 ω,辐射方向图接近各向同性,验证了设计结果
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