Study on impact of Vertical Sectorization on mobility and existing MRO performance

D. Kifle, B. Wegmann, I. Viering, A. Klein
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Abstract

Mobility robustness optimization (MRO) is one of the Self Organizing Network (SON) features that automatically adjusts network mobility configurations by detecting problems and correcting handover (HO) parameters. The existing MRO operation is based on stationary network deployment assumption where handover error statistics are continuously monitored between cell-pair borders as long as the cells shape and neighbor relationships are maintained. In the dynamic deployment case, where cell deployment layout is changing by following the nature of the traffic distribution, existing neighbor relationships might not be maintained and new neighbors could appear in the network. In such cases, MRO instances and counters used before deployment change might not be valid any longer for the new network layout. In this paper work, we have studied the impact of deployment and network layout change introduced by Vertical Sectorization (VS), a typical Active Antenna Systems (AAS) feature, on the performance of MRO. A crucial aspect here is the treatment of MRO statistics while introducing a change in the network deployment layout. The study gives information if there is a need to enhance the existing MRO concepts by introducing inter-node coordination during execution of a deployment change in the network.
垂直分界对机动性和现有MRO绩效的影响研究
移动性鲁棒性优化(MRO)是自组织网络(SON)的特征之一,它通过检测问题和纠正切换(HO)参数来自动调整网络的移动性配置。现有的MRO操作是基于静止网络部署假设,在保持小区形状和邻居关系的前提下,连续监测小区对边界之间的切换错误统计。在动态部署情况下,小区部署布局随着流量分布的性质而变化,现有的邻居关系可能无法维持,网络中可能出现新的邻居。在这种情况下,在部署更改之前使用的MRO实例和计数器可能对新的网络布局不再有效。在本文中,我们研究了典型的有源天线系统(AAS)特征垂直扇形(VS)所引入的部署和网络布局变化对MRO性能的影响。这里的一个关键方面是在引入网络部署布局更改时对MRO统计数据的处理。该研究提供了是否需要通过在网络部署变更执行过程中引入节点间协调来增强现有MRO概念的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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