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一种用于无人机和航天器通信的高效共形堆叠天线阵列设计及三维波束形成

An Efficient Conformal Stacked Antenna Array Design and 3D-Beamforming for UAV and Space Vehicle Communications.

作者信息

Albagory Yasser

机构信息

Department of Computer Engineering, College of Computers and Information Technology, Taif University, P.O. Box 11099, Taif 21944, Saudi Arabia.

Electronics and Electrical Communications Engineering Department, Faculty of Electronic Engineering, Menoufia University, Menouf 32952, Egypt.

出版信息

Sensors (Basel). 2021 Feb 15;21(4):1362. doi: 10.3390/s21041362.

Abstract

In this paper, a new conformal array structure and beamforming technique are proposed to provide efficient communication performance for unmanned aerial vehicles (UAVs) and space vehicles. The proposed array is formed by conformally stacking cylindrical, conical, and concentric circular (CSC) arrays which are all coaxially aligned with the same axis of the conformed body and with uniform interelement spacing. The array elements are then fed by a weighting vector that has an adaptive cosine tapered profile where the maximum amplitude coefficient is oriented with the mainlobe direction to improve the scanning capabilities of the array and increase the array effective area. In addition, for very large, conformed body structures such as space vehicles, a frontal mainlobe-oriented partial CSC array beamforming technique is proposed to efficiently utilize the large CSC structure, reduce the processing requirements for mainlobe electronic steering, and to provide very low sidelobe levels with reduced backlobe levels. Simulation results show that the proposed CSC design can provide wide scanning angles of up to ±70° angular range in the θ-direction with only ±1° change in the beamwidth, without increasing array size and with achievable sidelobe level of -45 dB and backlobe levels less than -10 dB.

摘要

本文提出了一种新的共形阵列结构和波束形成技术,以提供无人机(UAV)和航天器的高效通信性能。所提出的阵列由圆柱形、圆锥形和同心圆形(CSC)阵列共形堆叠而成,这些阵列均与共形主体的同一轴线同轴对齐且具有均匀的阵元间距。然后,阵列单元由具有自适应余弦渐变轮廓的加权向量馈电,其中最大幅度系数与主瓣方向对齐,以提高阵列的扫描能力并增加阵列有效面积。此外,对于诸如航天器等非常大的共形主体结构,提出了一种面向正面主瓣的部分CSC阵列波束形成技术,以有效利用大型CSC结构,降低主瓣电子转向的处理要求,并提供非常低且后瓣电平降低的旁瓣电平。仿真结果表明,所提出的CSC设计在θ方向上可提供高达±70°角范围的宽扫描角度,波束宽度仅变化±1°,而不增加阵列尺寸,可实现的旁瓣电平为-45 dB,后瓣电平小于-10 dB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dee/7918988/ab53e6822695/sensors-21-01362-g001.jpg

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