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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Application of Characteristic Mode Theory in HF Band Aircraft-Integrated Multiantenna System Designs
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Application of Characteristic Mode Theory in HF Band Aircraft-Integrated Multiantenna System Designs

机译:特征模式理论在HF波段飞机集成多天线系统设计中的应用

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摘要

The large wavelength at high-frequency (HF) band imposes critical challenges in platform conformal HF antenna designs, especially when multiple HF antennas are required in multifunction aircraft electronic systems. This paper presents an approach for the design of the aircraft-integrated multiantenna system based on the theory of characteristic modes (CMs). By investigating the CMs of the aircraft body in the entire HF band, three types of radiation patterns are synthesized at three frequency bands centered at 8, 18, and 28 MHz, respectively. The synthesis is achieved through the linear weighting combinations of the first few dominant CMs, and a multiobjective evolutionary algorithm is implemented to seek the complex weighting coefficients in each band. Following the theoretically synthesized radiating currents, three pairs of exciters are then designed and flush mounted on optimal locations over the aircraft. Furthermore, properly designed LC matching networks are introduced in each exciter to get good impedance matching in each band. Because of the large physical size of the aircraft, scaled model of the proposed aircraft-integrated multiantenna system was fabricated and experimentally verified. Measurement results are in good agreement with simulated results and demonstrate the effectiveness of the proposed approach in the designs of HF aircraft-integrated multiantenna systems.
机译:高频(HF)波段的大波长在平台保形HF天线设计中提出了严峻的挑战,尤其是在多功能飞机电子系统中需要多个HF天线的情况下。本文提出了一种基于特征模式理论的飞机集成多天线系统设计方法。通过研究整个HF频段上飞机机身的CM,可以在分别以8、18和28 MHz为中心的三个频段上合成三种类型的辐射方向图。通过前几个主要CM的线性加权组合来实现综合,并实现了一种多目标进化算法来寻找每个频带中的复杂加权系数。根据理论合成的辐射电流,然后设计三对激励器,并将其平齐安装在飞机上的最佳位置。此外,在每个激励器中引入了经过适当设计的LC匹配网络,以在每个频带中获得良好的阻抗匹配。由于飞机的物理尺寸较大,因此制造了拟议的飞机集成多天线系统的比例模型并进行了实验验证。测量结果与模拟结果非常吻合,并证明了该方法在HF飞机集成多天线系统设计中的有效性。

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