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PHY layer performance of heterogeneous LTE-Advanced network in 3D extended channel models

机译:3D扩展通道模型中异构LTE-Advanced网络的PHY层性能

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This paper evaluates the user performance analysis of pico-cells and macro-cells in heterogeneous LTE-Advanced networks. The analysis makes use of state-of-the-art 3D ray-tracing for a large number of macro and pico-cell Enhanced Node B and user equipment locations. A baseband LTE-A link level simulator for 2×2 MIMO was designed and implemented in MATLAB to determine the user performance in pico-cells and macro-cells for line-of-sight links and non-line-of-sight link. Based on analysis of all available modulation and coding schemes, the received bit mutual information rate abstraction method is used to determine the optimum physical layer throughput. Packet error rate and optimum throughput are evaluated for pico-cellular and macro-cellular users. A comparison of external wall and lamp-post mounted pico-cell BS deployments is analysed. The analysis show that the UE in the pico-cell cases generally resulted in higher SNR and optimum throughput compared to the macro-cell cases in NLoS environments.
机译:本文评估了异构LTE-Advanced网络中微微细胞和宏观细胞的用户性能分析。分析利用最先进的3D射线跟踪,用于大量宏观和微微细胞增强节点B和用户设备位置。对于2×2 MIMO基带LTE-A的链路级仿真,设计并在MATLAB实现以确定线的视距链路和非视距的视距链路在微微小区和宏小区的用户性能。基于对所有可用调制和编码方案的分析,所接收的位互信息速率抽象方法用于确定最佳物理层吞吐量。评估数据包错误率和最佳吞吐量,用于微微蜂窝和宏蜂窝蜂窝用户。分析了外墙和灯柱安装的微微细胞BS部署的比较。该分析表明,与NLOS环境中的宏小区案例相比,微微小区案例中的UE通常导致较高的SNR和最佳吞吐量。

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