5g异构网络中的自适应Femtocell接入控制

M. M. Mohamed, H. El-Badawy, Reem Abdelhadi, A. Ammar
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引用次数: 0

摘要

异构网络被认为是增加网络容量和为网络用户提供高质量服务(QoS)的有力手段。然而,在由飞基站和宏基站组成的异构网络中,信号差的地方的宏用户更愿意访问最近的飞基站。因此,这些访问将对femto用户产生不良影响。因此,本文首先提出了一种自适应的飞基站接入系统模型来控制飞基站用户(fu)和宏用户(mu)之间的资源分配。利用所提出的自适应系统模型,确定最合适的飞基站接入方式。其次,提出了一种借用技术,作为高通信密度的飞基站的安全臂。仿真结果表明,根据不同的网络密度,采用不同的移动基站接入方式,既保证了无线基站的高QoS,又能在不影响无线基站需求的情况下,帮助受影响的无线基站获得业务。也;仿真结果表明,利用该借用技术模型可以将阻塞MU的数量从93 MU减少到0 MU,从而提高了网络的整体性能。结果表明,与封闭系统模型相比,该模型的性能提高了52%。
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Adaptive Femtocell Accessing Control in A 5g Heterogeneous Network
Heterogeneous network is considered a powerful key to increase network capacity and provide high quality of service (QoS) for network users. However, in a heterogeneous network composed of femtocells and a macrocell, Macro users in poor signal places prefer to access to the nearest femtocell. Thus, these accessing will have a bad effect on femto users. Therefore, in this paper, first we propose an adaptive femtocell access system model to control the resource allocation between femto users (FUs) and macro users (MUs). Using the proposed adaptive system model, the most appropriate femtocell access mode will be determined. Second, a borrowing technique is proposed to be an arm of safety for femtocells that suffer from high traffic density. Simulation results show the adaptation of femtocell access modes with a varying network density to guarantee high QoS for FUs and help suffered MUs to get services without affecting the demands of FUs. Also; Simulation results show that the overall network performance can be improved using the proposed borrowing technique model as the number of blocking MUs can be decreased from 93 MU to zero MU. Also results show that, the proposed model will outperform the system performance by 52% with respect to the closed system model.
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