宽带中继信道中基于vivaldi的圆形天线阵列的创建

Pavel A. Mezhevov, K. Korovin, Aleksey N. Likontsev
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引用次数: 0

摘要

介绍。无人驾驶飞行器(uav)正在迅速普及。UVA的发展需要有源天线系统能够形成辐射方向图主瓣的窄波束。尽管许多研究已经考虑了具有大范围扫描角度的专用天线阵列,但此类系统在无人机上的位置仍有待研究。用于无人机的这种阵列的发展将能够用几个中继器创建一个安全的中继宽带信道。开发用于无人机的宽带天线阵列,可以在方位角平面的任何方向设置辐射方向图的主瓣,用于中继任务。材料和方法。在Ansys HFSS电磁建模软件包中建立了辐射源模型和基于该模型的圆形天线阵。给出了由8元和16元组成的阵列的方向系数与增益的关系。得到了满足无人机在宽频带重传条件的电压驻波比依赖关系和指向性图。提出了圆形天线阵列中保证最大增益(指向性)的有源元件数量的建议。提出了可用于无人机发展的技术解决方案。该系统可以通过优化天线阵列元件和采用圆柱形或半球形阵列来进一步改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Creation of a Vivaldi-Based Circular Antenna Array for Broadband Relay Channels
Introduction. Unmanned aerial vehicles (UAVs) are rapidly gaining in popularity. The UVA development requires active antenna systems capable of forming a narrow beam of the main lobe of the radiation pattern. Although numerous studies have considered specialized antenna arrays with a wide range of scanning angles, the location of such systems on UAVs remains under-investigated. The development of such arrays for UAVs will enable the creation of a secure relay broadband channel with a few repeaters.Aim. Development of a broadband antenna array for UAVs with the possibility of setting the main lobe of the radiation pattern in any direction of the azimuthal plane, for use in relay tasks.Materials and methods. An emitter model and a circular antenna array on its basis was developed in the Ansys HFSS electromagnetic modeling package.Results. The dependence of the directional coefficient and the gain for an array consisting of 8 and 16 elements was shown. Voltage standing-wave ratio dependences and directivity patterns that satisfy the conditions of retransmission in a wide-frequency band using UAVs were obtained. Recommendations on the number of active elements in a circular antenna array that ensure the maximum gain (directivity) were formulated.Conclusion. Technical solutions that can be used in the development of UAVs are proposed. The system can be further improved by optimizing the antenna array elements and using a cylindrical or hemispherical array.
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