A location-based self-optimizing algorithm for the inter-RAT handover parameters

A. Awada, B. Wegmann, I. Viering, A. Klein
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引用次数: 5

Abstract

The Long Term Evolution (LTE) is a new radio access technology (RAT) which is currently being deployed on top of the second generation (2G) or third generation (3G) mobile networks. As a result, user equipments (UEs) will be handed over from one RAT to another. To improve the robustness of the inter-RAT handovers and reduce cost, self-organizing networks (SONs) are used to configure the inter-RAT handover thresholds in an automatic and autonomous way replacing the current manual optimization methods. The handover thresholds can be configured cell-specifically or cell-pair specifically where a dedicated handover threshold is configured with respect to each target cell of handover. However, both optimization paradigms can fail to resolve all mobility failure events in some cells where radio conditions are not stationary along the cell border. In this paper, we propose a new paradigm for configuring and optimizing the inter-RAT handover thresholds based on the locations of UEs in the cell. Simulation results show that the new paradigm outperforms cell-specific and cell-pair specific schemes by resolving additional numbers of mobility failure events.
基于位置的rat间切换参数自优化算法
长期演进(LTE)是一种新的无线接入技术(RAT),目前正部署在第二代(2G)或第三代(3G)移动网络之上。因此,用户设备(ue)将从一个RAT移交给另一个RAT。为了提高rat间切换的鲁棒性和降低成本,采用自组织网络(SONs)自动、自主地配置rat间切换阈值,取代了现有的人工优化方法。切换阈值可以特定于细胞或特定于细胞对配置,其中相对于切换的每个目标细胞配置专用切换阈值。然而,这两种优化模式都不能解决在某些细胞边界无线电条件不稳定的情况下的所有迁移失败事件。在本文中,我们提出了一种新的范例,用于配置和优化基于单元中ue位置的rat间切换阈值。仿真结果表明,通过解决额外数量的迁移失败事件,新范式优于细胞特异性和细胞对特异性方案。
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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