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Distributed Power Allocation for the Downlink of a Two-Cell MISO-NOMA System

机译:两单元MISO-NOMA系统下行链路的分布式功率分配

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In this paper, we investigate the distributed power allocation algorithm for the downlink of a two-cell multiple input and single output non- orthogonal multiple access (MISO-NOMA) system. The problem targets at minimizing the total power consumption of the base stations (BSs) while taking into consideration each user's data rate requirement. A distributed power control algorithm is devised. During each iteration, the BS updates the transmit power of its attached users according to the link gain vector and the inter-cell interference plus noise value at the users. For some special cases, we show that the proposed algorithm is guaranteed to converge to a unique fixed point that could be an optimal solution based on Yate's power control framework. Furthermore, some modifications are made for the iterative algorithm to enhance the convergence performance of the instances with feasible solutions. Simulation results demonstrate that the designed power allocation strategy can significantly improve system performance over conventional orthogonal multiple access (OMA) counterpart in terms of total transmit power and outage probability.
机译:在本文中,我们研究了用于两小区多输入和单输出非正交多址(MISO-NOMA)系统的下行链路的分布式功率分配算法。该问题旨在使基站(BS)的总功耗最小化,同时考虑到每个用户的数据速率要求。设计了一种分布式功率控制算法。在每次迭代期间,BS根据链路增益矢量和用户处的小区间干扰加噪声值来更新其所连接的用户的发射功率。对于某些特殊情况,我们证明了所提出的算法可以保证收敛到唯一的固定点,这可能是基于Yate的功率控制框架的最佳解决方案。此外,对迭代算法进行了一些修改,以通过可行的解决方案增强实例的收敛性能。仿真结果表明,在总发射功率和中断概率方面,设计的功率分配策略可以大大提高系统性能,优于传统的正交多址访问(OMA)。

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