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Bandwidth Enhancement of Platform-Mounted HF Antennas Using the Characteristic Mode Theory

机译:基于特征模式理论的平台式高频天线带宽提升

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Many high-frequency (HF) antennas have significantly smaller dimensions than the wavelength at which they operate and thus suffer from narrow bandwidths. In many military applications, such HF antennas are mounted on relatively large metallic platforms. In this paper, we examine how a platform-mounted antenna can be used to excite the characteristic modes (CMs) of the platform itself to increase the overall bandwidth of the system. In this case, the platform will act as the main radiator and the mounted antennas act primarily as the coupling mechanism between the antenna and the external circuit. We use the theory of CMs to identify the appropriate platform modes and determine the practical means of exciting them. This allows for significantly increasing the bandwidth of the antenna system compared to the bandwidth of the antenna system in isolation. This approach is employed to enhance the bandwidth of a horizontally polarized HF loop antenna system by as much as 10 times compared to that of a stand-alone full-loop antenna. Scaled models of the proposed antennas were fabricated and experimentally characterized. Measurement results are in good agreement with the theoretically predicted results and demonstrate the feasibility of using the proposed approach in designing bandwidth-enhanced platform-mounted HF antennas.
机译:许多高频(HF)天线的尺寸远小于其工作波长的尺寸,因此带宽较窄。在许多军事应用中,此类HF天线安装在相对较大的金属平台上。在本文中,我们研究了如何使用平台安装天线来激发平台本身的特征模式(CM),以增加系统的整体带宽。在这种情况下,平台将充当主辐射器,安装的天线主要充当天线与外部电路之间的耦合机制。我们使用CM的理论来确定适当的平台模式,并确定激发它们的实用方法。与隔离的天线系统的带宽相比,这允许显着增加天线系统的带宽。与独立的全环天线相比,该方法可将水平极化HF环天线系统的带宽提高多达10倍。拟议天线的比例模型已制作完成并进行了实验表征。测量结果与理论上的预测结果非常吻合,并证明了使用该方法设计带宽增强的平台安装高频天线的可行性。

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