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Passive Intermodulation and Network Planning Challenges in Future Indoor Networks and Energy Efficient Buildings

机译:未来室内网络和节能建筑中被动互调和网络规划挑战

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Energy efficient building materials are these days being used to improve the thermal insulation and efficiency of modern buildings. However, such energy efficient building materials have been shown to block not only the unwanted heat radiation but also the outdoor radio signals penetrating into the buildings. Consequently, providing adequate coverage inside these modern buildings by using legacy outdoor deployment solutions, e.g. macrocells, is proving to be quite challenging. One solution to this problem is to deploy a dedicated indoor network, building on, e.g., indoor distributed antenna systems (DAS). However, a key problem in indoor DAS systems, supporting multiple operators, is the passive intermodulation (PIM), which has typically been considered to originate from loose connectors and damaged cables. However, it has been recently found out that the antenna environment can also play a significant role in generating PIM in multi-operator DAS systems. This paper examines the effects of antenna location in real apartment buildings through real PIM RF measurements. In particular, the aim is to find suitable guidelines for antenna placement/installation in cases where the DAS antenna has to located in a corridor, in the center of a building. We also evaluate the impact of measured PIM levels on the indoor network coverage and capacity in a realistic building setting through detailed ray tracing based analysis. Overall, the findings in this paper show that the coverage and capacity of DAS based indoor radio networks are very sensitive to the associated PIM mechanisms, and thus specific emphasis should be put on the location planning and optimization of the antenna units inside the buildings.
机译:这些天可以使用节能建筑材料来提高现代建筑的热绝缘和效率。然而,已经证明了这种节能建筑材料不仅可以阻挡不需要的热辐射,而且还被挡住了渗透到建筑物中的室外无线电信号。因此,通过使用遗留户外部署解决方案,例如,在这些现代建筑物内提供足够的覆盖范围。宏小区,被证明是非常具有挑战性的。解决此问题的一个解决方案是部署专用的室内网络,建筑物,例如室内分布式天线系统(DAS)。然而,支持多个操作员的室内DAS系统中的一个关键问题是被动互调(PIM),通常被认为是源自松动的连接器和损坏的电缆。然而,最近发现天线环境也可以在多运营商DAS系统中发挥PIM来发挥重要作用。本文通过实际PIM RF测量检查了真正的公寓建筑物中天线位置的影响。特别地,目的是在DAS天线位于建筑物的中心位于走廊中的情况下,找到用于天线放置/安装的合适指导。我们还通过基于详细的基于射线跟踪的分析评估了测量PIM水平对逼真的建筑环境中的室内网络覆盖和容量的影响。总体而言,本文的研究结果表明,基于DAS的室内无线电网络的覆盖率和容量对相关的PIM机制非常敏感,因此应具体的重点放在建筑物内的天线单元的位置规划和优化。

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