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Energy-Efficient User Scheduling and Power Control for Multi-Cell OFDMA Networks Based on Channel Distribution Information

机译:基于信道分配信息的多小区OFDMA网络的节能用户调度和功率控制

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In this paper, we investigate the energy-efficient user scheduling and power control problem in downlink multicell multiuser orthogonal frequency division multiple access networks, where only the channel distribution information is available. The resulting optimization problem is a combinatorial problem, which belongs to the class of cardinality constrained fractional programming problems subject to a maximum outage probability constraint. To solve the original problem, we derive a centralized joint user scheduling and power control solution satisfying the generalized Karush-Kuhn-Tucker conditions by resorting to the successive convex approximation (SCA). In particular, the proposed scheme can be used to solve the resource allocation problem subject to each user's minimum throughput constraint even if all the subcarriers have the same channel gain. A decentralized power control scheme is proposed to maximize the energy efficiency through combining SCA and alternating direction method of multipliers. Simulation results demonstrate the effectiveness of the proposed schemes.
机译:在本文中,我们研究仅在信道分配信息可用的下行链路多小区多用户正交频分多址网络中的节能用户调度和功率控制问题。所产生的优化问题是组合问题,属于受最大中断概率约束的基数约束分数规划问题类别。为了解决原始问题,我们通过采用逐次凸逼近(SCA)导出了满足广义Karush-Kuhn-Tucker条件的集中式联合用户调度和功率控制解决方案。特别地,即使所有子载波具有相同的信道增益,所提出的方案也可以用于解决受每个用户的最小吞吐量约束的资源分配问题。提出了一种分散式功率控制方案,通过结合SCA和乘法器的交替方向方法来最大化能量效率。仿真结果证明了所提方案的有效性。

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