Alam Touhidul, Islam Mohammad Tariqul, Hakim Mohammad Lutful, Alharbi Khalid H, Singh Mandeep Singh Jit, Sheikh Muntasir M, Aldhaheri Rabah W, Islam Md Shabiul, Soliman Mohamed S
Pusat Sains Ankasa (ANGKASA), Institut Perubahan Iklim, Universiti Kebangsaan Malaysia (UKM), Bangi 43600, Selangor, Malaysia.
Department of Computer Science and Engineering, International Islamic University Chittagong (IIUC), Kumira, Chattogram 4318, Bangladesh.
Nanomaterials (Basel). 2023 Jan 4;13(2):228. doi: 10.3390/nano13020228.
The concept of nanosatellite technology becomes a viable platform for earth and space observation research to minimize cost and build time for the payload. The communication approach is the essential fundamental attribute of a satellite, of which the antenna is a crucial component for forming a communication link between the nanosatellite and the earth. The nanosatellite antenna must comply with some special requirements like compact size, lightweight, and high gain with a space-compatible structure. This paper proposes a compact metamaterial-based Ku-band antenna with circular polarization for the nanosatellite communication system. The designed antenna obtained an impedance bandwidth of 2.275 GHz with a realized gain of 6.74 dBi and 3 dB axial beamwidth of 165° at 12.10 GHz. The overall antenna size of the designed is 0.51λ × 0.51λ × 0.17λ, which is fabricated on Rogers 5880 substrate material. The antenna results performance has been examined with a 1 U nanosatellite structure and found suitable to integrate with metallic and nonmetallic surfaces of any miniature nanosatellite structure.
纳米卫星技术的概念成为地球和太空观测研究的一个可行平台,以尽量降低有效载荷的成本并缩短建造时间。通信方式是卫星的基本属性,其中天线是在纳米卫星与地球之间形成通信链路的关键组件。纳米卫星天线必须符合一些特殊要求,如尺寸紧凑、重量轻以及具有与空间兼容结构的高增益。本文针对纳米卫星通信系统提出了一种基于超材料的紧凑型 Ku 波段圆极化天线。所设计的天线在 12.10 GHz 频率下获得了 2.275 GHz 的阻抗带宽、6.74 dBi 的实现增益以及 165° 的 3 dB 轴向波束宽度。所设计天线的整体尺寸为 0.51λ × 0.51λ × 0.17λ,采用 Rogers 5880 基板材料制造。该天线的性能已在 1U 纳米卫星结构上进行了测试,发现适合与任何微型纳米卫星结构的金属和非金属表面集成。