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NOMA for Hybrid mmWave Communication Systems With Beamwidth Control

机译:具有波束宽度控制的混合MMWAVE通信系统的NOMA

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摘要

In this paper, we propose a novel non-orthogonal multiple access (NOMA) scheme with beamwidth control for hybrid millimeter wave communication systems and study the resource allocation design to maximize the system energy efficiency. In particular, NOMA transmission allows more than one user to share a single radio frequency chain, which is beneficial to enhance the system energy efficiency. More importantly, the proposed heamwidth control can increase the number of served NOMA groups by widening the beamwidth that can further exploit the energy efficiency gain brought by NOMA. To this end, two beamwidth control methods, based on the conventional beamforming and the Dolph-Chebyshev beamforming, respectively, are proposed. We first characterize the main lobe power losses due to the two beamwidth control methods and propose an effective analog heamformer design to minimize the power loss. Then, we formulate the energy-efficient resource allocation design as a non-convex optimization problem, which takes into account the minimum required user data rate. A NOMA user grouping algorithm based on the coalition formation game theory is developed and a low-complexity iterative digital precoder design is proposed to achieve a locally optimal solution utilizing the quadratic transformation. Simulation results verify the fast convergence and effectiveness of our proposed algorithms. In addition, our results demonstrate the superior energy efficiency achieved by our proposed beamwidth controlling NOMA scheme compared to the conventional orthogonal multiple access and NOMA schemes without beamwidth control.
机译:在本文中,我们提出了一种新的非正交多通道(NOMA)方案,具有用于混合毫米波通信系统的波束宽度控制,研究资源分配设计,以最大化系统能效。特别地,NOMA传输允许多个用户共享单个射频链,这有利于提高系统能量效率。更重要的是,所提出的HeamWidth控制可以通过扩大可以进一步利用NOMA带来的能效增益的波束宽度来增加服务NOMA组的数量。为此,提出了两个基于传统波束形成和Dolph-Chebyshev波束形成的波束宽度控制方法。我们首先通过两个波束控制方法来表征主凸瓣功率损耗,并提出了一种有效的模拟Heamformer设计,以最小化功率损耗。然后,我们将节能资源分配设计配合为非凸优化问题,这考虑了所需的最低用户数据速率。开发了一种基于联盟形成博弈论的NOMA用户分组算法,提出了一种低复杂性迭代数字预编码器设计,以实现利用二次转换的局部最佳解决方案。仿真结果验证了我们所提出的算法的快速收敛性和有效性。此外,我们的结果表明,与传统的正交多通道和NOMA方案相比,我们所提出的波纹控制NOMA方案实现的卓越能效。

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