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Improving coverage and load conditions through joint adaptation of antenna tilts and cell selection rules in mobile networks

机译:通过联合调整天线倾斜度和移动网络中的小区选择规则来改善覆盖范围和负载条件

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One major topic of research into SON technology is the coordination of SON use cases. Network operators expect a coordinated handling of the parameter and configuration changes submitted to the operating network by closed-loop SON use case implementations. Beside a published conceptual framework, SON coordination has already been treated in the literature, especially regarding the mobility load balancing (MLB) and mobility robustness optimization (MRO) use cases. In this paper, we utilize the capacity and coverage optimization (CCO) and MLB use cases. Rather than performing any heading or tailing coordination of separate CCO and MLB algorithms, in our work we concentrate on the optimization considering both use cases in a joint algorithm. Our approach introduces cell-individual loads and the joint treatment of cell selection policies and antenna tilt settings into well-known and previously reported optimization concepts. Using system simulations of a sample LTE real deployment scenario, we verify that our joint optimization of antenna tilts and cell selection rules including the notion of cell-individual loads outperforms the optimization of tilts-only (with and without the notion of cell-individual loads within the algorithm) and of the cell selection rules-only in terms of spectral and energy efficiency.
机译:SON技术研究的一个主要主题是SON用例的协调。网络运营商希望通过闭环SON用例实现来协调处理提交给运营网络的参数和配置更改。除了已发布的概念框架之外,SON协调在文献中也已得到处理,特别是在移动性负载平衡(MLB)和移动性鲁棒性优化(MRO)用例方面。在本文中,我们利用容量和覆盖范围优化(CCO)和MLB用例。在我们的工作中,我们没有执行单独的CCO和MLB算法的任何前进或后退协调,而是专注于在联合算法中考虑这两种用例的优化。我们的方法将小区个人负载以及小区选择策略和天线倾斜设置的联合处理引入到众所周知的和先前报告的优化概念中。通过使用示例LTE实际部署场景的系统仿真,我们验证了我们对天线倾斜度和小区选择规则的联合优化(包括小区单个负荷的概念)优于仅倾斜的优化(有或没有小区单个负荷的概念)以及仅在频谱和能量效率方面的小区选择规则。

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