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Joint placement and power control of LTE Femto Base Stations in enterprise environments

机译:企业环境中LTE Femto基站的联合放置和功率控制

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In order to boost the data rate for indoor users, low power nodes like Femto Base Stations (BSs) are deployed in LTE (long term evolution) networks. The placement of Femtos inside enterprise building environments can significantly affect indoor user performance. We consider a system model that takes into account the following parameters: co-channel interference between Femto BSs and Macro BSs, wall attenuation factor and user density in enterprise building environments. We solve joint placement and power control problem by formulating two Mixed Integer Programming (MIP) optimization models: Optimal Constant Threshold Signal to Interference plus Noise Ratio (OptCTSINR) and Optimal Varying Threshold SINR (OptVTSINR), which optimally tune the power of Femto BS, guarantee a certain minimum SINR to users and also minimize the number of Femtos needed for the coverage of enterprise buildings. We then solve these MIP models by utilizing branch and bound framework of CPLEX solver in General Algebraic Modeling System (GAMS) tool. When compared to center K-Means (CKM) clustering based placement scheme, for a given number of Femtos, proposed scheme OptCTSINR results in average SINR improvement of 39% and proposed OptVTSINR outperforms OptCTSINR by 6.7%, respectively.
机译:为了提高室内用户的数据速率,在LTE(长期演进)网络中部署了毫微微基站(BSS)的低功耗节点。 Femtos内部的EmertoS内部建筑环境的位置可能会显着影响室内用户性能。我们考虑一个考虑以下参数的系统模型:企业建筑环境中的毫微微BS和宏BS和宏BSS和宏BSS,墙壁衰减因子和用户密度之间的共信道干扰。通过配制两个混合整数编程(MIP)优化模型来解决接头放置和功率控制问题:最佳恒定阈值与干扰加噪声比(OPTCTSINR)和最佳变化阈值SINR(OPTVTSINR),最佳地调整FEMTO BS的功率,为用户保证一定的最低SINR,并最大限度地减少企业建筑物覆盖所需的蠕动症的数量。然后,我们通过利用一般代数建模系统(Gams)工具中的CPLEX求解器的分支和绑定框架来解决这些MIP模型。与基于中心K平均值(CKM)聚类的放置方案相比,对于给定数量的Femtos,所提出的方案OptCTSINR导致平均SINR改善39%,并分别提出optCTSINR的优势6.7%。

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