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A Comprehensive Survey on Moving Networks

机译:移动网络综合调查

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The unprecedented increase in the demand for mobile data, fuelled by new emerging applications and use-cases such as high-definition video streaming and heightened online activities has caused massive strain on the existing cellular networks. As a solution, the fifth generation (5G) of cellular technology has been introduced to improve network performance through various innovative features such as millimeter-wave spectrum and Heterogeneous Networks (HetNets). In essence, HetNets include several small cells underlaid within macro-cell to serve densely populated regions like stadiums, shopping malls, and so on. Recently, a mobile layer of HetNet has been under consideration by the research community and is often referred to as moving networks. Moving networks comprise of mobile cells that are primarily introduced to improve Quality of Service (QoS) for the commuting users inside public transport because QoS is deteriorated due to vehicular penetration losses and high Doppler shift. Furthermore, the users inside fast moving public transport also exert excessive load on the core network due to large group handovers. To this end, mobile cells will play a crucial role in reducing the overall handover count and will help in alleviating these problems by decoupling in-vehicle users from the core network. This decoupling is achieved by introducing separate in-vehicle access link, and out-of-vehicle back-haul links with the core network. Additionally side-haul links will connect mobile cells with their neighbors. To date, remarkable research results have been achieved by the research community in addressing challenges linked to moving networks. However, to the best of our knowledge, a discussion on moving networks and mobile cells in a holistic way is still missing in the current literature. To fill the gap, in this article, we comprehensively survey moving networks and mobile cells. We cover the technological aspects of moving cells and their applications in the futuristic applications. We also discuss the use-cases and value additions that moving networks may bring to future cellular architecture and identify the challenges associated with them. Based on the identified challenges, we discuss the future research directions.
机译:通过新出现的应用和使用情况(如高清视频流和高度的在线活动)推动了对移动数据的需求的前所未有的增加,这对现有蜂窝网络引起了大规模的应变。作为解决方案,已经引入了第五代(5G)蜂窝技术,以通过毫米波频谱和异构网络(Hetnet)等各种创新特征来提高网络性能。从本质上讲,Hetnets包括在宏观细胞内下面的几个小细胞,以便像体育场,商场等体育场一样稠密地区。最近,研究社区已经考虑了一层HetNet,并且通常被称为移动网络。移动网络包括主要引入的移动单元,以提高公共交通内部通勤用户的服务质量(QoS),因为QoS由于车辆穿透损耗和高多普勒偏移而劣化。此外,由于大型组切换,快速移动公共交通的用户在核心网络上也会发挥过多的负载。为此,移动单元将在减少整体切换计数方面发挥至关重要的作用,并有助于通过从核心网络解耦车载用户来帮助缓解这些问题。通过引入单独的车载接入链路和与核心网络的外车载回路联系来实现这种去耦。另外,Side-Haul链接将与其邻居连接移动单元。迄今为止,研究界在解决与移动网络相关的挑战方面取得了显着的研究结果。然而,据我们所知,在当前文献中仍然缺少全面地移动网络和移动单元的讨论。为了填补差距,在本文中,我们全面调查移动网络和移动单元。我们涵盖了移动电池的技术方面及其在未来派应用中的应用。我们还讨论了移动网络可能带来未来蜂窝架构并识别与它们相关的挑战的使用情况和价值添加。根据所确定的挑战,我们讨论了未来的研究方向。

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