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Energy-efficient resource allocation in SDMA systems with large numbers of base station antennas

机译:具有大量基站天线的SDMA系统中的节能资源分配

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In this paper, resource allocation for energy efficient communication in space division multiple access (SDMA) downlink networks with large numbers of transmit antennas is studied. The considered problem is modeled as a non-convex optimization problem which takes into account the circuit power consumption and a minimum required data rate. By exploiting the properties of fractional programming, the considered non-convex optimization problem in fractional form is transformed into an equivalent optimization problem in subtractive form, which enables the derivation of an efficient iterative resource allocation algorithm. The optimal power allocation solution for each iteration is derived based on a low complexity user selection policy for maximization of the energy efficiency of data transmission (bit/Joule delivered to the users). Simulation results illustrate that the proposed iterative resource allocation algorithm converges in a small number of iterations and unveil the trade-off between energy efficiency and the number of antennas.
机译:本文研究了具有大量发射天线的空分多址(SDMA)下行链路网络中节能通信的资源分配。考虑的问题被建模为非凸优化问题,该问题考虑了电路功耗和最小所需数据速率。通过利用分数规划的性质,将考虑的分数形式的非凸优化问题转化为减法形式的等效优化问题,从而可以推导有效的迭代资源分配算法。基于低复杂度的用户选择策略导出每次迭代的最佳功率分配解决方案,以最大程度地提高数据传输的能量效率(传递给用户的位/焦耳)。仿真结果表明,所提出的迭代资源分配算法收敛于少量迭代,并揭示了能量效率和天线数量之间的权衡。

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