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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Integrated Terahertz Communication With Reflectors for 5G Small-Cell Networks
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Integrated Terahertz Communication With Reflectors for 5G Small-Cell Networks

机译:带有反射器的集成太赫兹通信,用于5G小型蜂窝网络

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As the cellular networks continue to progress between generations, the expectations of 5G systems are planned toward high-capacity communication links that can provide users access to numerous types of applications (e.g., augmented reality and holographic multimedia streaming). The demand for higher bandwidth has led the research community to investigate unexplored frequency spectrums, such as the terahertz band for 5G. However, this particular spectrum is strived with numerous challenges, which includes the need for line-of-sight (LoS) links as reflections will deflect the waves as well as molecular absorption that can affect the signal strength. This is further amplified when a high quality of service has to be maintained over infrastructure that supports mobility, as users (or groups of users) migrate between locations, requiring frequent handover for roaming. In this paper, the concept of mirror-assisted wireless coverage is introduced, where smart antennas are utilized with dielectric mirrors that act as reflectors for the terahertz waves. The objective is to utilize information such as the user's location and to direct the reflective beam toward the highest concentration of users. A multiray model is presented in order to develop the propagation models for both indoor and outdoor scenarios in order to validate the proposed use of the reflectors. An office and a pedestrian-walking scenarios are used for indoor and outdoor scenarios, respectively. The results from the simulation work show an improvement with the usage of mirror-assisted wireless coverage, improving the overall capacity, the received power, the path loss, and the probability of LoS.
机译:随着蜂窝网络在几代人之间不断发展,对5G系统的期望已朝着大容量通信链路发展,该通信链路可为用户提供访问多种类型的应用程序(例如增强现实和全息多媒体流)的权限。对更高带宽的需求已导致研究界研究未探索的频谱,例如5G的太赫兹频段。但是,要为这个特定的频谱进行许多挑战,其中包括需要视线(LoS)链接,因为反射会偏转波以及可能影响信号强度的分子吸收。当用户(或用户组)在位置之间迁移时,需要频繁切换漫游时,必须在支持移动性的基础架构上维护高质量的服务时,这会进一步放大。在本文中,介绍了镜像辅助无线覆盖的概念,其中智能天线与用作太赫兹波的反射器的介电镜一起使用。目的是利用诸如用户的位置之类的信息,并将反射光束引向用户的最高集中度。为了发展室内和室外场景的传播模型,提出了一种多射线模型,以验证所提出的反射器的使用。办公室和行人步行方案分别用于室内和室外方案。仿真工作的结果表明,通过使用镜像辅助的无线覆盖范围,可以提高总容量,接收功率,路径损耗和LoS概率。

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