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Real Life LTE In-Building Deployment Demonstrating Multi-Cell Capacity

机译:展示多小区容量的实时LTE室内部署

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In Building Solutions (IBS) are a well-established approach to providing indoor cellular coverage. The increasing wireless mobile broadband traffic and the fact that most broadband data is consumed indoors increases the interest to understand the IBS capacity potential. For a given available spectrum, a straightforward capacity solution is cell-splitting. In this paper, measurement results from a full-scale real life deployment with a Long Term Evolution (LTE) IBS solution are presented. Two cell-splitting scenarios in a three floor, 7500 m2 office building have been tested, both by collecting traffic and radio statistics from actual users, as well as performing controlled walk-tests in the building. It is found that cell splitting is an excellent way to enable increased indoor capacity. The isolation between floors as well as within a floor is higher than in a typical macro scenario. High throughput and fraction of spatial multiplexing is maintained even with artificially generated 100% activity. The capacity is assessed to around 2 kbps/m2/MHz with a 6 cell solution.
机译:建筑解决方案(IBS)是一种成熟的方法,可提供室内蜂窝覆盖范围。无线移动宽带流量的增长以及室内使用大多数宽带数据的事实,增加了人们对了解IBS容量潜力的兴趣。对于给定的可用频谱,简单的容量解决方案是电池分裂。本文介绍了采用长期演进(LTE)IBS解决方案进行的大规模实际部署的测量结果。通过收集来自实际用户的流量和无线电统计数据,以及在建筑物中执行受控的步行测试,对位于三层,7500平方米的三层办公楼中的两种小区分裂场景进行了测试。发现电池分裂是增加室内容量的极好方法。楼层之间以及楼层内部的隔离度高于典型的宏方案。即使使用人工生成的100%的活动,也可以保持高吞吐量和空间复用的比例。使用6单元解决方案时,容量估计约为2 kbps / m2 / MHz。

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