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Analysis of Indoor Solutions for Provision of Indoor Coverage at 3.5 GHz and 28 GHz for 5G System

机译:5G系统提供3.5 GHz和28 GHz室内覆盖的室内解决方案分析

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The 5th Generation (5G) wireless networks are envisioned to support emerging bandwidth-hungry applications. Millimeter wave (mmWave) communication has been considered as a promising solution for future capacity crunch due to large available bandwidth. However, an outdoor macrocellular layer lacks the capability of providing an adequate coverage to indoor users, especially at higher frequencies i.e. 28 GHz. Therefore, the provision of high data rates and high system capacity in an indoor environment requires a separate indoor solution. The main target of this paper is to analyze the performance of Ultra Dense Network (UDN) and Distributed Antenna System (DAS) deployment in an indoor (university office) environment at 1.8 GHz, 2.6 GHz, 3.5 GHz and 28 GHz frequency. This research work is conducted by performing a ray tracing simulation using a three dimensional floor plan. The obtained results show that the existing indoor solutions which are in operation at 2.6 GHz can be reused at 3.5 GHz frequency with minor power adjustment, or by using antennas with little higher gain. However, the operation at 28 GHz requires a new plan for providing good indoor coverage. Acquired results show that DAS improves the cell capacity by reducing the interference. However, the UDN provides a higher system capacity due to more number of cells. The real gain of operation at 28 GHz can only be achieved by using larger system bandwidth e.g 200 MHz band.
机译:5 设想了一代(5G)无线网络将支持新兴的带宽需求型应用程序。由于可用带宽大,毫米波(mmWave)通信被认为是解决未来容量不足的有希望的解决方案。但是,室外的宏蜂窝层缺乏向室内用户提供足够的覆盖的能力,特别是在较高的频率,即28GHz下。因此,在室内环境中提供高数据速率和高系统容量需要单独的室内解决方案。本文的主要目标是分析在1.8 GHz,2.6 GHz,3.5 GHz和28 GHz频率的室内(大学办公室)环境中的超密集网络(UDN)和分布式天线系统(DAS)部署的性能。这项研究工作是通过使用三维平面图执行光线跟踪模拟来进行的。获得的结果表明,在2.6 GHz下运行的现有室内解决方案可以在3.5 GHz频率下以较小的功率调整或通过使用增益稍高的天线来重复使用。但是,要在28 GHz下运行,就需要制定新计划以提供良好的室内覆盖范围。所得结果表明,DAS通过减少干扰来提高小区容量。但是,由于单元数量更多,UDN提供了更高的系统容量。只有通过使用更大的系统带宽(例如200 MHz频段)才能实现28 GHz的实际工作增益。

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