Uplink pilot and data power control for single cell massive MIMO systems with MRC

Hei Victor Cheng, Emil Björnson, E. Larsson
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引用次数: 26

Abstract

This paper considers the jointly optimal pilot and data power allocation in single cell uplink massive MIMO systems. A closed form solution for the optimal length of the training interval is derived. Using the spectral efficiency (SE) as performance metric and setting a total energy budget per coherence interval the power control is formulated as optimization problems for two different objective functions: the minimum SE among the users and the sum SE. The optimal power control policy is found for the case of maximizing the minimum SE by converting it to a geometric program (GP). Since maximizing the sum SE is an NP-hard problem, an efficient algorithm is developed for finding KKT (local maximum) points. Simulation results show the advantage of optimizing the power control over both pilot and data power, as compared to heuristic power control policies.
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基于MRC的单小区大规模MIMO系统的上行导频和数据功率控制
本文研究了单小区上行海量MIMO系统中导频和数据功率的联合最优分配问题。给出了最佳训练间隔长度的封闭解。以频谱效率(spectral efficiency, SE)为性能指标,设定每个相干区间的总能量预算,将功率控制公式化为两个不同目标函数的优化问题:用户间最小SE和SE之和。通过将最小SE转化为几何规划(GP),找到了最小SE最大化情况下的最优功率控制策略。由于最大化和SE是一个np困难问题,因此开发了一种寻找KKT(局部最大值)点的有效算法。仿真结果表明,与启发式功率控制策略相比,对导频和数据功率进行优化的功率控制具有优势。
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