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Comparative Study of Microcell’s Performance using Different Models in Different Regions

机译:在不同地区使用不同模型对微蜂窝电池性能的比较研究

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In this paper the performance of Microcells was analyzed using MATLAB simulation to create a real-life scenario of radio-waves signals propagating in three different environments: urban, suburban and rural area to find out the signal loss, and from that it is understood which areas are best suited for Microcells. This was achieved using several propagation models of both empirical and deterministic types for comparison purposes like Winner II model, Stanford University Interim (SUI) model, and Ericsson 9999. 1800 MHZ frequency band is considered, as Micro cell works best at this frequency range. For corresponding models, their mathematical model is used to find the Estimated maximum allowable path loss and model loss for 4G LTE process. The results are compared, and it is concluded based on simulation results that Microcells give the best result for Winner II model and poor result for Ericsson 9999 model, while real life results may differ. Mobile phone system like PHS and DECT are using Microcell which covers limited area like mall, hotel or transportation hub.
机译:在本文中,使用MATLAB仿真分析了微蜂窝的性能,以创建在三种不同环境(城市,郊区和农村地区)中传播的无线电波信号的真实场景,以找出信号损耗,并据此了解区域最适合微蜂窝。为了进行比较,使用了几种经验和确定性类型的传播模型(例如Winner II模型,斯坦福大学中期(SUI)模型和Ericsson 9999)进行比较。考虑到1800 MHZ频带,因为微型蜂窝在该频率范围内效果最佳。对于相应的模型,它们的数学模型用于找到4G LTE过程的估计最大允许路径损耗和模型损耗。将结果进行比较,并根据仿真结果得出结论,微单元对于Winner II模型给出了最好的结果,对于爱立信9999模型给出了差的结果,而实际结果可能有所不同。诸如PHS和DECT之类的移动电话系统正在使用Microcell,其覆盖的区域有限,例如购物中心,酒店或交通枢纽。

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