论文标题

QOE驱动的反途径感知MC-NOMA认知无线电网络中的联合传输

Joint Transmission in QoE-Driven Backhaul-Aware MC-NOMA Cognitive Radio Network

论文作者

Zarini, Hosein, Khalili, Ata, Tabassum, Hina, Rasti, Mehdi

论文摘要

在本文中,我们开发了一个资源分配框架,以优化通过多载体非载波多载多重访问(MC-NOMA)启用的回程感知多细胞认知无线网络(CRN)的下行链路传输。考虑的CRN由单个宏基站(MB)和多个小型BS(SBS)组成,分别称为主要和次级层。对于主要层,我们考虑正交频部多访问(OFDMA)方案以及服务质量(QOS)来评估用户满意度。另一方面,在次级层次中,使用了MC-Noma,并且通过体验质量(QOE)评估了Web,Video和Audio的用户满意度。此外,通过关节传输(JT),可以通过子载体(JT)上的多个SBS同时提供辅助层中的每个用户。特别是,我们在辅助层中制定了功率控制和调度的联合优化问题(即用户关联和子载波分配),以最大程度地利用二级用户实现的总QOE。已经开发出一种有效的资源分配机制来处理非线性形式的干扰并克服QOE服务功能的非转换性。增强Lagrangian方法(ALM)的调度和电源控制政策杠杆作用。仿真结果表明,与现有方案相比,提出的解决方案方法可以控制干扰,JT-NOMA改善了总感知的QoE。

In this paper, we develop a resource allocation framework to optimize the downlink transmission of a backhaul-aware multi-cell cognitive radio network (CRN) which is enabled with multi-carrier non-orthogonal multiple access (MC-NOMA). The considered CRN is composed of a single macro base station (MBS) and multiple small BSs (SBSs) that are referred to as the primary and secondary tiers, respectively. For the primary tier, we consider orthogonal frequency division multiple access (OFDMA) scheme and also Quality of Service (QoS) to evaluate the user satisfaction. On the other hand in secondary tier, MC-NOMA is employed and the user satisfaction for web, video and audio as popular multimedia services is evaluated by Quality-of-Experience (QoE). Furthermore, each user in secondary tier can be served simultaneously by multiple SBSs over a subcarrier via Joint Transmission (JT). In particular, we formulate a joint optimization problem of power control and scheduling (i.e., user association and subcarrier allocation) in secondary tier to maximize total achievable QoE for the secondary users. An efficient resource allocation mechanism has been developed to handle the non-linear form interference and to overcome the non-convexity of QoE serving functions. The scheduling and power control policy leverage on Augmented Lagrangian Method (ALM). Simulation results reveal that proposed solution approach can control the interference and JT-NOMA improves total perceived QoE compared to the existing schemes.

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