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Energy Efficient Resource Allocation in Terahertz Downlink NOMA Systems

机译:Terahertz下行链路诺玛系统中的节能资源分配

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Terahertz (THz) band has attracted considerable interest recently due to its superior high frequency and large available bandwidth. THz could act a vital part in the sixth generation (6G) mobile communication networks. In this paper, we introduce the downlink non-orthogonal multiple access (NOMA) technology into THz band small cell networks, where the total performance is optimized considering the two key enabling technologies. In order to decrease the energy consumption triggered by increasing of wireless services, we pay great attention to energy efficiency (EE) optimization and resource allocation in the THz-NOMA downlink systems by solving the subchannel assignment and power optimization. We first exploit a channel model for the THz-NOMA downlink system by using the key features of THz-NOMA networks. Then we utilize Dinkelbach-style algorithm to solve the resource allocation problem and decompose it into two subproblems. A subchannel assignment algorithm and a power optimization based on alternative direction method of multipliers (ADMM) algorithm are developed to get the solution. Finally, to embody the strengths of THz-NOMA performance, we compare our proposed schemes against the conventional schemes. Simulation results yield substantially higher EE and further prove the availability of our proposed schemes.
机译:由于其优越的高频和大型可用带宽,Terahertz(Thz)乐队最近吸引了相当大的兴趣。 THZ可以在第六代(6G)移动通信网络中起到重要的部分。在本文中,我们将下行链路非正交多次访问(NOMA)技术引入THz频段小型电池网络中,考虑到两种关键启用技术进行了优化的总性能。为了减少通过增加无线服务触发的能量消耗,通过解决子信道分配和功率优化,我们非常注重THZ-NOMA下行链路系统中的能效(EE)优化和资源分配。我们首先利用Thz-Noma网络的关键特征来利用THZ-NOMA下行链路系统的频道模型。然后我们利用Dinkelbach风格的算法来解决资源分配问题并将其分解为两个子问题。开发了一种基于乘法器(ADMM)算法的替代方向方法的子信道分配算法和功率优化来获取解决方案。最后,为了体现THZ-NOMA绩效的优势,我们将拟议计划与传统方案进行比较。仿真结果屈服率基本上更高,并进一步证明了我们提出的计划的可用性。

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