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Cluster-Based Resource Management in OFDMA Femtocell Networks With QoS Guarantees

机译:具有QoS保证的OFDMA Femtocell网络中基于群集的资源管理

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摘要

Recently, operators have resorted to femtocell networks to enhance indoor coverage and increase system capacity. Nevertheless, to successfully deploy such solution, efficient resource-allocation algorithms and interference mitigation techniques should be deployed. The new applications delivered by operators require large amounts of network bandwidth. Although, some customers may want to pay more in exchange for a better quality of service (QoS), some others need fewer resources and can be charged accordingly. Hence, we consider an orthogonal frequency-division multiple-access (OFDMA) femtocell network serving both QoS-constrained high-priority (HP) and best-effort (BE) users. Our objective is to satisfy a maximum number of HP users while serving BE users as well as possible. This multiobjective optimization problem is NP-hard. For this aim, we propose in this paper a new resource-allocation and admission control algorithm, which is called QoS-based femtocell resource allocation (Q-FCRA), based on clustering and taking into account QoS requirements. We show through extensive network simulations that our proposal outperforms two state-of-the-art schemes [centralized-dynamic frequency planning (C-DFP) and distributed random access (DRA)] and our previous proposal, i.e., femtocell resource allocation (FCRA), in both low- and high-density networks. The results concern the throughput satisfaction rate, spectrum spatial reuse, the rate of rejected users, fairness, and computation and convergence time.
机译:最近,运营商已使用毫微微小区网络来增强室内覆盖范围并增加系统容量。然而,为了成功地部署这种解决方案,应该部署有效的资源分配算法和干扰缓解技术。运营商交付的新应用程序需要大量的网络带宽。尽管某些客户可能希望为提高服务质量(QoS)付出更高的代价,但其他一些客户则需要更少的资源并可以相应地收费。因此,我们考虑服务于QoS受限的高优先级(HP)和尽力而为(BE)用户的正交频分多址(OFDMA)毫微微小区网络。我们的目标是在尽可能多地服务BE用户的同时,满足最大数量的HP用户。这个多目标优化问题是NP难的。为此,我们提出了一种新的资源分配和接纳控制算法,该算法基于聚类并考虑了QoS要求,称为基于QoS的毫微微小区资源分配(Q-FCRA)。我们通过广泛的网络仿真显示,我们的提案优于两个最先进的方案[集中式动态频率规划(C-DFP)和分布式随机接入(DRA)],以及我们之前的提案,即毫微微小区资源分配(FCRA) ),无论是低密度网络还是高密度网络。结果涉及吞吐量满意率,频谱空间重用,拒绝用户率,公平性以及计算和收敛时间。

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