基于相位校正介质透镜的非对称偶极子天线

Dmitry S. Aliev, A. Ivanov, Y. Pasternak, V. Pendyurin, Egor S. Chesnokov
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引用次数: 0

摘要

问题。现代移动机器人系统越来越多地应用于人类活动的各个领域。为了在离控制中心最远的地方保证数据传输和控制通道的高吞吐量、宽带和可靠性,对它们提出了越来越严格的要求。我想单独指出的是,要求尽可能地降低这些复合物的成本。因此,开发技术先进、经济可行的天线系统,增加机器人复合控制点间隔内无线电信道的能量潜力,是解决这一问题的途径之一。问题的表述。这就要求研制出一种机械强度高的技术天线,这种天线以各种构型的透镜结构为基础,采用现代介电材料制成,具有重量小、体积小、成本低廉的特点,能够提高宽频段辐射电磁能量水平。文章的目的。给出了一种非对称偶极子天线的模型和数值实验结果。结果。天线设计在金属化的圆形基板上,是一个带有漏斗形孔的聚苯乙烯圆柱体,里面有一个不对称的锥形振动臂。计算结果表明,在用于组织机器人综合体直接宽带无线电通信信道的频段内,增益变化在5.5 ~ 9 dB之间,优于常用的鞭状天线。计算得到的驻波比证实了该天线模型在较宽频带内的性能。阻抗响应和史密斯-史密斯图显示了天线输入阻抗从30到95欧姆的初步计算扩展。现实意义。所提出的天线模型保证了可制造性、机械强度和低成本。全方位辐射模式和增加的增益使得预测使用该天线作为数据传输通道和机器人综合体(如无人机)控制设备的一部分的可能性成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asymmetrical dipole antenna based on a phase-correcting dielectric lens
Problem. Modern mobile robotic systems are increasingly used in various fields of human activity. More and more stringent requirements are imposed on them to ensure high throughput, broadband and reliability of data transmission and control channels at the maximum distance from the control center. And what I would like to note separately is the requirement to reduce the cost of such complexes as much as possible. Therefore, the development of technologically advanced, economically feasible antenna systems that provide an increase in the energy potential of the radio channel in the interval of the robotic complex - control point is one of the ways to solve this problem. Formulation of the problem. It is required to develop a mechanically strong, technological antenna, built on the basis of lens structures of various configurations, made of modern dielectric materials, characterized by reduced weight and size characteristics and cost price, which will increase the level of radiated electromagnetic energy in a wide frequency band. Purpose of the article. Present the developed model of an asymmetric dipole antenna and the results of a numerical experiment. Result. The antenna design is made on a metallized round substrate and is a polystyrene cylinder with a funnel-shaped hole, inside which there is an asymmetrical conical vibrator arm. The results of calculations showed that in the frequency band, which is used to organize direct broadband radio communication channels with robotic complexes, the gain varies within 5.5-9 dB, which is superior in this parameter to the commonly used whip antennas. The calculated standing wave ratio confirms the performance of the developed antenna model in a wide frequency band. The impedance response and the Smith-Smith diagram showed a preliminary calculated spread of the input impedance of the antenna from 30 to 95 ohms. Practical significance. The proposed antenna model ensures manufacturability, mechanical strength, and low cost. The full-azimuth radiation mode and increased gain make it possible to predict the possibility of using this antenna as part of the equipment for the data transmission channel and control of robotic complexes such as unmanned aerial vehicles.
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