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Load Coupling and Energy Optimization in Multi-Cell and Multi-Carrier NOMA Networks

机译:多小区和多载波NOMA网络中的负载耦合和能量优化

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摘要

In this paper, we investigate energy optimization in multi-cell and multi-carrier non-orthogonal multiple access (NOMA) networks. We apply a load-coupling model for NOMA networks to capture the coupling relation of mutual interference among cells. With this analytical tool, we formulate an energy minimization problem in a NOMA-based load-coupled system, where optimizing load-rate-power allocation, and determining decoding order and user grouping are the key aspects. Theoretically, we prove that the minimum consumed energy can be achieved by using all the time-frequency resources in each cell to deliver users' demand, and allowing all the users to share resource units. From a practical perspective, we consider three types of NOMA grouping schemes, i.e., all-user grouping, partitioned and non-partitioned grouping. We develop tailored solutions for each grouping scheme to enable efficient load-rate-power optimization. These three algorithmic components are embedded into a power-adjustment framework to provide energy-efficient solutions for NOMA networks. Numerical results demonstrate promising energy-saving gains of NOMA over orthogonal multiple access in large-scale cellular networks, in particular for high-demand and resource-limited scenarios. The results also show fast convergence of the proposed algorithms and demonstrate the effectiveness of the solutions.
机译:在本文中,我们研究了多小区和多载波非正交多址(NOMA)网络中的能量优化。我们为NOMA网络应用了负载耦合模型,以捕获小区之间相互干扰的耦合关系。借助此分析工具,我们在基于NOMA的负载耦合系统中制定了能量最小化问题,其中优化负载率-功率分配,确定解码顺序和用户分组是关键方面。从理论上讲,我们证明了通过使用每个小区中的所有时频资源来满足用户需求并允许所有用户共享资源单元,可以实现最低的能耗。从实践的角度来看,我们考虑三种类型的NOMA分组方案,即全用户分组,分区分组和非分区分组。我们针对每种分组方案开发量身定制的解决方案,以实现有效的负载率-功率优化。这三个算法组件被嵌入到功率调整框架中,以为NOMA网络提供节能解决方案。数值结果表明,在大型蜂窝网络中,尤其是在需求量大且资源有限的情况下,通过正交多址访问可获得NOMA的节能成果。结果还表明了所提出算法的快速收敛性,并证明了解决方案的有效性。

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