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Adaptive double thresholds handover mechanism in small cell LTE-A network

机译:小型电池LTE-A网络中的自适应双阈值切换机制

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Rapid demands for large capacity services and shortage spectrum resources have motivated the deployment of small cells in LTE-A network. Small cells are low-cost, low power nodes with limited coverage region, as the existence of small cells, more sophisticated network architecture increases the difficulty in dealing with mobility management. The contradiction between traffic demands and network resources is also very prominent, the rationally tradeoff between high quality service demands and signaling overhead in HO procedure should be considered in mobility management. Aiming at solving these issues, efficient handover (HO) mechanisms are more and more concerned to enhance mobility management in small cell networks. In this paper, we proposed a Self-Organizing Networks (SON) based Double Thresholds Optimization (DTO) handover algorithm, which offers an efficient method to mitigate handover signaling overhead while satisfying user's requirements of service quality. Specifically, through optimizing two key HO parameters associated with HO procedure, DTO enhances mobility robustness management effectively. Furthermore, a system-level LTE simulator is implemented to evaluate the mobility performance. The results strongly verify that the proposed DTO algorithm can assist LTE network in achieving an appropriate compromise between handover (HO) signaling overhead and quality of service (QoS), besides, load balance is acquired with rational allocation of resources.
机译:对大容量服务和短缺频谱资源的快速需求激励了LTE-A网络中的小单元的部署。小电池是低成本,具有有限覆盖区域的低功率节点,作为小电池的存在,更复杂的网络架构增加了处理移动性管理的难度。交通需求和网络资源之间的矛盾也非常突出,应在移动性管理中考虑高质量的服务需求与HO程序中的信令开销之间的合理权衡。旨在解决这些问题,有效的切换(HO)机制越来越涉及提高小型电池网络中的移动性管理。在本文中,我们提出了一种基于自组织网络(SON)的双阈值优化(DTO)切换算法,其提供了一种有效的方法来减轻切换信令开销,同时满足用户的服务质量要求。具体地,通过优化与HO程序相关的两个关键的HO参数,DTO有效增强了移动性鲁棒性管理。此外,实现了系统级LTE模拟器以评估移动性性能。结果强烈验证,所提出的DTO算法可以帮助LTE网络在切换(HO)信令开销和服务质量(QoS)之间实现适当的折衷,并且除了有合理的资源分配的负载平衡。

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