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A Handover Decision Strategy with a Novel Modified Load-Based Adaptive Hysteresis Adjustment in 3GPP LTE System

机译:3GPP LTE系统中基于新型基于负载的自适应滞后调整的切换决策策略

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This paper introduces a hard handover strategy with a novel adaptive hysteresis adjustment that is needed to reduce handover drop rate in 3GPP long term evolution (LTE). First of all, we adopt a Hybrid handover scheme considering both the received signal strength (RSS) and the load information of the adjacent evolved Node Bs (eNBs) as a factor for deciding the target eNB. The Hybrid scheme causes the load status between the adjacent eNBs to be largely similar. Then, we propose a modified load-based adaptive hysteresis scheme to find a suitable handover hysteresis value utilizing the feature of the small load difference between the target and serving eNBs obtained from the result of the Hybrid scheme. As a result, through the proposed modified load-based adaptive hysteresis scheme, the best target cell is very well selected according to the dynamically changing communication environments. The simulation results show that the proposed scheme provides good performance in terms of handover drop rate.
机译:本文介绍了一种具有新型自适应滞后调整的硬切换策略,该策略可降低3GPP长期演进(LTE)中的切换丢包率。首先,我们采用混合切换方案,同时考虑接收信号强度(RSS)和相邻的演进型节点B(eNB)的负载信息作为决定目标eNB的因素。混合方案使相邻eNB之间的负载状态非常相似。然后,我们提出了一种改进的基于负载的自适应磁滞方案,以利用从混合方案的结果获得的目标基站和服务eNB之间的较小负载差异的特征来找到合适的切换磁滞值。结果,通过提出的改进的基于负载的自适应滞后方案,可以根据动态变化的通信环境很好地选择最佳目标小区。仿真结果表明,该方案在切换丢包率方面具有良好的性能。

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