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Energy Efficiency Maximization for MISO Systems with Total and Per-antenna Power Constraints

机译:具有总和每个天线功率约束的MISO系统的能效最大化

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In wireless communications, the power of each antenna is typically constrained similar to the total power. In this paper, we consider a maximization problem of energy efficiency (EE) for multiple-input single-output (MISO) systems in the presence of both total and per-antenna power constraints. To solve this global non-concave optimization problem, we propose an iterative antenna selection and power allocation (IASPA) algorithm with two steps. In the first step, a set of optimal antennas are selected based on their channel gains. In the second step, by proving the concavity of this maximization problem of energy efficiency for fixed active antennas with respect to total power for transmission, we solve the power allocation by bidirectional search approach. Numerical results suggest that the proposed IASPA algorithm achieves the same performance as brute-force search and requires low computational burden.
机译:在无线通信中,每个天线的功率通常被约束类似于总功率。在本文中,我们考虑了在存在总和每个天线功率约束的情况下为多输入单输出(MISO)系统的能效(EE)的最大化问题。为了解决这一全局非凹面优化问题,我们提出了一种具有两个步骤的迭代天线选择和功率分配(IASPA)算法。在第一步中,基于其频道增益选择一组最佳天线。在第二步中,通过对传输总功率证明固定有源天线的能量效率的最大化问题的凹面,我们通过双向搜索方法解决了功率分配。数值结果表明,所提出的IASPA算法达到与蛮力搜索相同的性能,并且需要低计算负担。

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