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Survey of Inter-Satellite Communication for Small Satellite Systems: Physical Layer to Network Layer View

机译:小型卫星系统卫星间通信的调查:物理层到网络层的视图

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Small satellite systems enable a whole new class of missions for navigation, communications, remote sensing, and scientific research for both civilian and military purposes. As individual spacecraft are limited by the size, mass, and power constraints, mass-produced small satellites in large constellations or clusters could be useful in many science missions such as gravity mapping, tracking of forest fires, finding water resources, etc. The proliferation of small satellites will enable a better understanding of the near-Earth environment and provide an efficient and economical means to access the space through the use of multi-satellite solution. Constellation of satellites provide improved spatial and temporal resolution of the target. Small satellite constellations contribute innovative applications by replacing a single asset with several very capable spacecraft, which opens the door to new applications. Future space missions are envisioned to become more complex and operate farther from Earth, and will need to support autonomous operations with minimal human intervention. With increasing levels of autonomy, there will be a need for remote communication networks to enable communication between spacecraft. These space-based networks will need to configure and maintain dynamic routes, manage intermediate nodes, and reconfigure themselves to achieve mission objectives. Hence, inter-satellite communication is a key aspect when satellites fly in formation. In this survey, we present the various research being conducted in the small satellite community for implementing inter-satellite communications based on the open system interconnection (OSI) model. This survey also reviews the various design parameters applicable to the first three layers of the OSI model, i.e., physical, data link, and network layer. Based on the survey, we also present a comprehensive list of design parameters useful for achieving inter-satellite communications for multiple small satellite missions. Specific topics include proposed solutions for some of the challenges faced by small satellite systems, enabling operations using a network of small satellites, and some examples of small satellite missions involving formation flying aspects.
机译:小型卫星系统使用于民用和军事目的的导航,通信,遥感和科学研究的任务达到全新的水平。由于单个航天器受大小,质量和功率的限制,因此,在大型星座或星团中批量生产的小型卫星可能在许多科学任务中有用,例如重力测绘,跟踪森林火灾,寻找水资源等。颗小型卫星将使人们更好地了解近地环境,并通过使用多卫星解决方案提供一种有效而经济的手段进入空间。卫星星座可提高目标的空间和时间分辨率。小型卫星群通过用几台功能非常强大的航天器代替一项资产,为创新应用做出了贡献,这为新应用打开了大门。预计未来的太空飞行任务将变得更加复杂,并在距地球更远的地方运行,并且将需要以最少的人工干预来支持自主运行。随着自治程度的提高,将需要远程通信网络以实现航天器之间的通信。这些基于空间的网络将需要配置和维护动态路由,管理中间节点,并重新配置自身以实现任务目标。因此,当卫星编队飞行时,卫星间通信是一个关键方面。在这项调查中,我们介绍了在小型卫星社区中进行的各种研究,这些研究旨在基于开放系统互连(OSI)模型来实现卫星间通信。该调查还回顾了适用于OSI模型前三层的各种设计参数,即物理层,数据链路层和网络层。根据调查,我们还列出了设计参数的完整列表,这些参数对于实现多个小型卫星任务的卫星间通信很有用。具体主题包括针对小型卫星系统面临的一些挑战的拟议解决方案,使用小型卫星网络进行的操作以及涉及编队飞行方面的小型卫星任务的一些示例。

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