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An effective handover scheme in heterogeneous networks

机译:异构网络中的有效切换方案

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Starting from 3rd Generation Partnership Projects (3GPP), heterogeneous network (HetNet) is widely deployed to solve the weak-coverage problems in hot spots, architectural barriers spots and large inner buildings. HetNet consists of macro base station (MBS) with strong transmission capacity and low power Pico base station (PBS) which are set up in these weak-coverage areas and provide greater bandwidth and higher data rates for users. HetNet are also considered as the important components of 5G wireless systems. In this paper, we introduce motion trajectory models for mobile user equipment (MUE) to provide basis of the handover simulation, and then we introduce an effective handover scheme based on the prediction of the UE motion curve and the pre-handover mechanism. We theoretically analysis the proposed scheme and simulate the scheme in 3GPP architecture. Simulation results validate the analytical results and prove that the proposed scheme avoid unnecessary handover especially for high-speed MUE, resulting in a lower handover failure (HOF) probability, fewer handover total times and larger system throughput, compared with original 3GPP scheme.
机译:从第3代合作伙伴计划(3GPP)开始,异构网络(HetNet)被广泛部署,以解决热点,架构障碍物和大型内部建筑物中的弱覆盖问题。 HetNet由具有强大的传输容量和低功耗Pico基站(PBS)的宏基站(MBS)组成,这些基站(PBS)在这些弱覆盖区域中设置并为用户提供更大的带宽和更高的数据速率。 HetNet也被认为是5G无线系统的重要组成部分。在本文中,我们向移动用户设备(Mue)引入运动轨迹模型以提供切换模拟的基础,然后我们基于UE运动曲线的预测和预切换机制来引入有效的切换方案。理论上,从理论上分析了所提出的方案并在3GPP架构中模拟该方案。仿真结果验证了分析结果,并证明了所提出的方案避免了特别用于高速Mue的不必要的切换,从而导致较低的切换故障(HOF)概率,与原始3GPP方案相比,整个交换总时间和更大的系统吞吐量。

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