论文标题
光学通信如何塑造深空通信的未来?调查
How Can Optical Communications Shape the Future of Deep Space Communications? A Survey
论文作者
论文摘要
随着十年末预期的大量深空(DS)任务,比以往任何时候都需要可靠和高容量的DS通信。然而,现有技术远非达到这样的目标。改善当前系统不仅需要工程领导力,而且在非常关键的是,研究了克服超长DS链接所面临的独特挑战的潜在技术。据我们所知,在过去十年中,没有对DS通信技术进行任何全面调查。自由空间光学(FSO)是一种新兴的DS技术,被证明可以获取较低的通信系统尺寸的重量和功率(SWAP),并且与当前使用的DS技术相比,与同行射频(RF)相比,实现了很高的容量。在这项调查中,我们讨论了深空光学通信(DSOC)的利弊,并审查其物理和网络特征。此外,我们首次为DS提供了有关实施轨道角动量(OAM)和量子通信(QC)的周到讨论。我们详细介绍了这些技术以及包括行星际网络(IPN)和RF/FSO系统在内的其他领域进步如何提高可靠性,容量和安全性。本文对DSOC技术进行了整体调查,这些DSOC技术收集了247种零散的文献,包括旨在为该领域的更多发展奠定基础的新观点。
With a large number of deep space (DS) missions anticipated by the end of this decade, reliable and high-capacity DS communications are needed more than ever. Nevertheless, existing technologies are far from meeting such a goal. Improving current systems does not only require engineering leadership, but also, very crucially, investigating potential technologies that overcome the unique challenges of ultra-long DS links. To the best of our knowledge, there has not been any comprehenive surveys of DS communications technologies over the last decade. Free space optical (FSO) is an emerging DS technology, proven to acquire lower communications systems size weight and power (SWaP) and achieve a very high capacity compared to its counterpart radio frequency (RF), the currently used DS technology. In this survey, we discuss the pros and cons of deep space optical communications (DSOC) and review their physical and networking characteristics. Furthermore, we provide, for the first time, thoughtful discussions about implementing orbital angular momentum (OAM) and quantum communications (QC) for DS. We elaborate on how these technologies among other field advances including interplanetary network (IPN) and RF/FSO systems improve reliability, capacity, and security. This paper provides a holistic survey of DSOC technologies gathering 247 fragmented pieces of literature and including novel perspectives aiming to set the stage for more developments in the field.