Martinez-de-Rioja Daniel, Martinez-de-Rioja Eduardo, Rodriguez-Vaqueiro Yolanda, Encinar Jose A, Pino Antonio
Information Processing and Telecommunications Center, Universidad Politécnica de Madrid, 28040 Madrid, Spain.
Area of Signal Theory and Communications, Universidad Rey Juan Carlos, 28942 Madrid, Spain.
Sensors (Basel). 2020 Dec 31;21(1):207. doi: 10.3390/s21010207.
Broadband communication satellites in Ka-band commonly use four reflector antennas to generate a multispot coverage. In this paper, four different multibeam antenna farms are proposed to generate the complete multispot coverage using only two multibeam reflectarrays, making it possible to halve the number of required antennas onboard the satellite. The proposed solutions include flat and curved reflectarrays with single or dual band operation, the operating principles of which have been experimentally validated. The designed multibeam reflectarrays for each antenna farm have been analyzed to evaluate their agreement with the antenna requirements for real satellite scenarios in Ka-band. The results show that the proposed configurations have the potential to reduce the number of antennas and feed-chains onboard the satellite, from four reflectors to two reflectarrays, enabling a significant reduction in cost, mass, and volume of the payload, which provides a considerable benefit for satellite operators.
Ka频段的宽带通信卫星通常使用四个反射器天线来生成多点覆盖。本文提出了四种不同的多波束天线组,仅使用两个多波束反射阵列就能生成完整的多点覆盖,从而有可能将卫星上所需天线的数量减半。所提出的解决方案包括单频段或双频段工作的平面和曲面反射阵列,其工作原理已通过实验验证。已对每个天线组设计的多波束反射阵列进行了分析,以评估它们是否符合Ka频段实际卫星场景的天线要求。结果表明,所提出的配置有可能将卫星上的天线和馈电链数量从四个反射器减少到两个反射阵列,从而显著降低有效载荷的成本、质量和体积,这为卫星运营商带来了可观的益处。