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Beamforming and Power Allocation Designs for Energy Efficiency Maximization in MISO Distributed Antenna Systems

机译:用于MISO分布式天线系统中能效最大化的波束成形和功率分配设计

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摘要

In this paper, we present a beamforming and power allocation algorithm for a downlink multiple-input single-output distributed antenna system which maximizes energy efficiency (EE). To reduce the computational complexity of conventional joint optimization approaches relying on an iterative method, we propose a near optimal scheme based on a closed-form solution. Employing the decomposition property of the joint optimization problem, the EE problem is solved in two steps. First, we determine the beamforming strategy for the EE maximization exposing the structure of beamforming vectors. Then, the optimal power allocation is presented as a closed-form solution by solving Karush-Kuhn-Tucker conditions. Through numerical simulations, we confirm that the proposed solution shows the performance almost identical to the jointly optimum method with much reduced complexity.
机译:在本文中,我们提出了一种用于下行链路多输入单输出分布式天线系统的波束成形和功率分配算法,该算法最大程度地提高了能效(EE)。为了减少依靠迭代方法的常规联合优化方法的计算复杂性,我们提出了一种基于封闭形式解决方案的近似最优方案。利用联合优化问题的分解特性,可以分两步解决EE问题。首先,我们确定EE最大化的波束成形策略,以揭示波束成形矢量的结构。然后,通过求解Karush-Kuhn-Tucker条件,将最优功率分配表示为封闭形式的解决方案。通过数值模拟,我们确认所提出的解决方案显示出的性能几乎与联合优化方法相同,但复杂度大大降低。

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