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Enhancing the Capacity of the Indoor 60 GHz Band Via Modified Indoor Environments Using Ring Frequency Selective Surface Wallpapers and Path Loss Models

机译:使用环形频率选择性表面墙纸和路径损耗模型,通过修改后的室内环境增强室内60 GHz频段的容量

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The 60 GHz band has been selected for short-range communication systems to meet consumers’ needs for high data rates. However, this frequency is attenuated by obstacles. This study addresses the limitations of the 60 GHz band by modifying indoor environments with ring Frequency Selective Surfaces (FSSs) wallpaper, thereby increasing its utilization. The ring FSS wallpaper response at a 61.5 GHz frequency has been analyzed using both MATLAB and Computer Simulation Technology (CST) Microwave Studio (MWS) software. ‘Wireless InSite’ is also used to demonstrate enhanced wave propagation in a building modified with ring FSSs wallpaper. The demonstration is applied to Single Input Single Output (SISO) and Multiple Input Multiple Output (MIMO) systems to verify the effectiveness of FSSs on such systems’ capacity. The effectiveness of the suggested modification over delay spread has been studied for the MIMO scenario, as well as the effect of the human body on capacity. Simulation results presented here show that modifying a building using ring FSS wallpaper is an attractive scheme for significantly improving the indoor 60 GHz wireless communications band. This paper also presents and compares two large-scale indoor propagation Path Loss Models (PLMs), the Close-In (CI) free space reference distance model and the Floating Intercept (FI) model. Data obtained from ‘Wireless InSite’ over distances ranging from 4 to 14.31 m is analyzed. Results show that the CI model provides good estimation and exhibits stable behavior over frequencies and distances, with a solid physical basis and less computational complexity when compared to the FI model.
机译:短距离通信系统已选择60 GHz频段,以满足消费者对高数据速率的需求。但是,该频率会被障碍物衰减。这项研究通过使用环形频率选择性表面(FSS)墙纸修改室内环境来解决60 GHz频段的局限性,从而提高了其利用率。已使用MATLAB和计算机仿真技术(CST)Microwave Studio(MWS)软件对61.5 GHz频率下的环形FSS墙纸响应进行了分析。 “无线InSite”还用于演示在使用环形FSS墙纸修改的建筑物中增强的波传播。该演示将应用于单输入单输出(SISO)和多输入多输出(MIMO)系统,以验证FSS在此类系统容量上的有效性。已针对MIMO场景研究了建议的延迟扩展修改的有效性,以及人体对容量的影响。这里给出的仿真结果表明,使用环形FSS墙纸修改建筑物是一种吸引人的方案,可以显着改善室内60 GHz无线通信频段。本文还介绍并比较了两个大型室内传播路径损耗模型(PLM),近距离(CI)自由空间参考距离模型和浮动拦截(FI)模型。分析了从“无线InSite”获得的4到14.31 m范围内的数据。结果表明,与FI模型相比,CI模型可提供良好的估计,并且在频率和距离上均表现出稳定的行为,具有坚实的物理基础和较低的计算复杂性。

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