论文标题

对Cubesats通信系统的基带体系结构的批判性审查

A Critical Review of Baseband Architectures for CubeSats Communication Systems

论文作者

Zeedan, Amr, Khattab, Tamer

论文摘要

小型卫星通信最近进入了起义空间应用程序驱动的巨大兴趣时期。由于其开发成本较低,因此Cubesats特别有吸引力,这使得它们非常有希望在全球无线通信领域发挥核心作用,并具有许多应用程序。此外,低地球轨道中立方体的星座可以满足全球覆盖的柔性低成本高速连通性的不断增长的需求。但是,这需要创新的解决方案来克服面临高数据利率低功率空间通信的重大挑战。本文对最近的Cupesat通信系统的设计和体系结构进行了全面和批判性的审查,特别关注其基带体系结构。详细调查了文献,以确定所有基带设计,测试和演示阶段,并准确描述系统体系结构和通信协议。对审查系统的可靠性,性能,数据速率和功耗进行了严格的评估,以了解当前立方体系统的局限性并确定未来发展的方向。结论是,立方体通信系统仍然面临许多挑战,即能够满足立方体需求的节能高速调制解调器的发展。然而,有几个有希望的方向用于改进,例如使用改进的编码算法,使用现场可编程栅极阵列,多个访问技术,波束形成,高级天线以及过渡到较高的频段。通过提供当前立方体通信系统的具体摘要,并通过批判性地评估其功能,局限性并提供有关潜在改进的见解,该审查应有助于Cubesat开发人员开发更有效和高的数据速率系统。

Small satellite communications recently entered a period of massive interest driven by the uprising space applications. CubeSats are particularly attractive due to their low development costs which makes them very promising in playing a central role in the global wireless communication sector with numerous applications. Moreover, constellations of CubeSats in low-earth orbits can meet the increasing demands of global-coverage flexible low-cost high-speed connectivity. However, this requires innovative solutions to overcome the significant challenges that face high-data-rate low-power space communications. This paper provides a comprehensive and critical review of the design and architecture of recent CubeSat communication systems with a particular focus on their baseband architectures. The literature is surveyed in detail to identify all baseband design, testing, and demonstration stages as well as accurately describe the systems architecture and communication protocols. The reliability, performance, data rate, and power consumption of the reviewed systems are critically evaluated to understand the limitations of current CubeSat systems and identify directions of future developments. It is concluded that CubeSat communication systems still face many challenges, namely the development of energy-efficient high-speed modems that satisfy CubeSats requirements. Nevertheless, there are several promising directions for improvements such as the use of improved coding algorithms, use of Field Programmable Gate Arrays, multiple access techniques, beamforming, advanced antennas, and transition to higher frequency bands. By providing a concrete summary of current CubeSat communication systems and by critically evaluating their features, limitations, and offering insights about potential improvements, the review should aid CubeSat developers to develop more efficient and high data rate systems.

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