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反射阵列天线:空间通信中新一代卫星巨型星座的智能解决方案。

Reflectarray antennas: a smart solution for new generation satellite mega-constellations in space communications.

作者信息

Imaz-Lueje Borja, Prado Daniel R, Arrebola Manuel, Pino Marcos R

机构信息

Department of Electrical Engineering, Group of Signal Theory and Communications, Universidad de Oviedo, Gijón, 33203, Spain.

出版信息

Sci Rep. 2020 Dec 9;10(1):21554. doi: 10.1038/s41598-020-78501-0.

Abstract

One of the most ambitious projects in communications in recent years is the development of the so-called satellite mega-constellations. Comprised of hundreds or thousands of small and low-cost satellites, they aim to provide internet services in places without existing broadband access. For the antenna subsystem, reflectarrays have been proposed as a cheap solution due to their low profile and manufacturing costs, while still providing good performance. This paper presents a full design of a reflectarray antenna for mega-constellation satellites with a shaped-beam isoflux pattern for constant power flux in the surface of the Earth. A unit cell consisting of two stacked rectangular microstrip patches backed by a ground plane is employed, providing more than 360° of phase-shift. The generalized intersection approach optimization algorithm is employed to synthesize the required isoflux pattern in a 2 GHz bandwidth in Ku-band. To that purpose, a full-wave electromagnetic analysis is employed for the wideband design. The optimized reflectarray layout complies with the specifications of the isoflux pattern in the frequency band 16 GHz-18 GHz, demonstrating the capabilities of this type of antenna to provide a low-cost, low-profile solution for the user beam segment, including different types of shaped beams.

摘要

近年来通信领域最具雄心的项目之一就是所谓卫星巨型星座的开发。这些星座由数百颗或数千颗小型低成本卫星组成,旨在为尚无宽带接入的地区提供互联网服务。对于天线子系统,反射阵列因其低剖面和制造成本低而被提议作为一种廉价解决方案,同时仍能提供良好性能。本文介绍了一种用于巨型星座卫星的反射阵列天线的完整设计,该天线具有成形波束等通量模式,可在地球表面实现恒定功率通量。采用了一种由两个堆叠的矩形微带贴片组成并由接地平面支撑的单元结构,可提供超过360°的相移。采用广义相交法优化算法在Ku波段2GHz带宽内合成所需的等通量模式。为此,在宽带设计中采用了全波电磁分析。优化后的反射阵列布局符合16GHz - 18GHz频段内等通量模式的规范,展示了这类天线为用户波束段提供低成本、低剖面解决方案的能力,包括不同类型的成形波束。

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