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首页> 外文期刊>Journal of computer networks and communications >Review of Adaptive Cell Selection Techniques in LTE-Advanced Heterogeneous Networks
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Review of Adaptive Cell Selection Techniques in LTE-Advanced Heterogeneous Networks

机译:LTE-Advanced异构网络中的自适应小区选择技术综述

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摘要

Poor cell selection is the main challenge in Picocell (PeNB) deployment in Long Term Evolution- (LTE-) Advanced heterogeneous networks (HetNets) because it results in load imbalance and intercell interference. A selection technique based on cell range extension (CRE) has been proposed for LTE-Advanced HetNets to extend the coverage of PeNBs for load balancing. However, poor CRE bias setting in cell selection inhibits the attainment of desired cell splitting gains. By contrast, a cell selection technique based on adaptive bias is a more effective solution to traffic load balancing in terms of increasing data rate compared with static bias-based approaches. This paper reviews the use of adaptive cell selection in LTE-Advanced HetNets by highlighting the importance of cell load estimation. The general performances of different techniques for adaptive CRE-based cell selection are compared. Results reveal that the adaptive CRE bias of the resource block utilization ratio (RBUR) technique exhibits the highest cell-edge throughput. Moreover, more accurate cell load estimation is obtained in the extended RBUR adaptive CRE bias technique through constant bit rate (CBR) traffic, which further improved load balancing as against the estimation based on the number of user equipment (UE). Finally, this paper presents suggestions for future research directions.
机译:在长期演进(LTE)高级异构网络(HetNets)中,微微小区选择是Picocell(PeNB)部署中的主要挑战,因为它会导致负载不平衡和小区间干扰。已经针对高级LTE HetNet提出了基于小区范围扩展(CRE)的选择技术,以扩展PeNB的覆盖范围以实现负载平衡。但是,在细胞选择中不良的CRE偏向设置会抑制所需细胞分裂获得的实现。相比之下,与基于静态偏差的方法相比,基于增加的数据速率,基于自适应偏差的小区选择技术是一种更有效的流量负载平衡解决方案。本文通过强调小区负载估算的重要性,回顾了自适应小区选择在LTE-Advanced HetNets中的使用。比较了基于CRE的自适应小区选择的不同技术的一般性能。结果表明,资源块利用率(RBUR)技术的自适应CRE偏差表现出最高的小区边缘吞吐量。此外,在扩展的RBUR自适应CRE偏置技术中,通过恒定比特率(CBR)流量可以获得更准确的小区负载估计,与基于用户设备(UE)数量的估计相比,这进一步改善了负载平衡。最后,本文提出了今后研究方向的建议。

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