Transmit beamforming optimization for energy efficiency maximization in downlink distributed antenna systems

Jilei Yan, Wei Wu, Yue Wang, Guorui Yang, Yantao Guo
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引用次数: 2

Abstract

In this paper, the energy efficient joint transmit beamforming is studied in the downlink of a single-cell multiuser distributed antenna system (DAS). A new power consumption model is defined at first, in which the backhauling power is taken into account. Then, we formulate a fractional optimization problem to maximize the system energy efficiency under the constraints of the maximum transmit power per distributed antenna unit (DAU) and the minimum rate requirement per user. The parametric equivalence method is employed to deal with the non-linear fractional objective, with the Dinkelbach's algorithm applied for searching the optimal parameter. Since the backhauling power is entangled with the structure of the beamformers, we firstly assume that each user is jointly supported by all DAUs. Moreover, due to the co-channel interference among users, the successive convex approximation method is employed. Finally, we use the weighting factor iteration to enhance the sparsity of the beamformers with the aim of minimizing the total power consumption while maintaining the achieved rate of each user. Simulation results show that our proposed joint transmit beamforming algorithm greatly improves the system energy efficiency.
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下行分布式天线系统中能量效率最大化的发射波束形成优化
本文研究了单小区多用户分布式天线系统(DAS)下行链路的节能联合发射波束形成问题。首先定义了一种考虑回运功率的新的电力消耗模型。然后,在每个分布式天线单元(DAU)的最大发射功率和每个用户的最小速率要求的约束下,我们建立了一个分数优化问题,以最大化系统的能量效率。采用参数等价法处理非线性分数目标,采用Dinkelbach算法搜索最优参数。由于回程功率与波束形成器的结构存在纠缠,我们首先假设每个用户由所有dau共同支持。此外,由于用户间的同信道干扰,采用了逐次凸逼近方法。最后,我们使用加权因子迭代来增强波束形成器的稀疏性,目的是在保持每个用户的实现速率的同时最小化总功耗。仿真结果表明,所提出的联合发射波束形成算法大大提高了系统的能量效率。
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