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Joint High Level QP and Low Level Power Control in NOMA/OMA Downlink Wireless Multimedia Communications

机译:NOMA / OMA下行无线多媒体通信中的联合高级QP和低级功率控制

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Improving Quality of Experience (QoE) of User Equipment (UE) in wireless multimedia services is a critical challenge. In this paper we study the joint design of high level dynamic video Quantization Parameter (QP) and the low level power control in QoE-driven downlink wireless multimedia services. Furthermore, we study QoE performance with new Non-Orthogonal Multiple Access (NOMA) schemes in the Base Station (BS) - UE multimedia downlink, and discuss the performance in comparison with conventional Orthogonal Multiple Access (OMA). We mathematically model UE's QoE gain (also known as utility) by considering UE's perceived data quality and the corresponding data cost. Then we show that there exists an optimal data consumption option for UE to achieve utility maximization based on different cost coefficients. In addition, the power allocation strategies and their associated constraints are investigated in both OMA and NOMA transmission schemes. Finally, through numerical simulations, we quantitatively analyze the impact of low level power allocation and high level QP control on UEs' utility gain and the system throughput performance.
机译:改善无线多媒体服务中用户设备(UE)的体验质量(QoE)是一项严峻的挑战。本文研究了QoE驱动的下行无线多媒体服务中高级动态视频量化参数(QP)和低级功率控制的联合设计。此外,我们在基站(BS)-UE多媒体下行链路中使用新的非正交多路访问(NOMA)方案研究QoE性能,并讨论了与常规正交多路访问(OMA)相比的性能。我们通过考虑UE的感知数据质量和相应的数据成本,对UE的QoE增益(也称为效用)进行数学建模。然后,我们表明存在一个最优的数据消耗选项,可以让UE基于不同的成本系数实现效用最大化。此外,在OMA和NOMA传输方案中都研究了功率分配策略及其相关的约束。最后,通过数值模拟,我们定量分析了低电平功率分配和高级QP控制对UE的效用增益和系统吞吐性能的影响。

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