Margin adaptive resource allocation in downlink multiuser MIMO-OFDMA system with Multiuser Eigenmode transmission

N. ul Hassan, M. Assaad
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引用次数: 5

Abstract

This paper studies the downlink multiuser multiple input multiple output-orthogonal frequency division multiple access (MIMO-OFDMA) system for margin adaptive multiuser eigenmode transmission (MET) with perfect channel state information at the transmitter. In margin adaptive objective, base station (BS) has to satisfy individual quality of service (QoS) constraints of the users subject to transmit power minimization. The solution is hard to achieve because multiple streams from different users on the same subcarrier cause inter-stream interference which forces the use of low complexity beamforming techniques and makes it a joint beamforming and resource allocation problem. We propose a sub-optimal two step solution which decouples beamforming from subcarrier and power allocation. First a reduced number of user groups are formed and then the problem is formulated as a convex optimization problem. Finally an efficient algorithm is developed which allocates subcarriers to these user groups. Simulation results reveal comparable performance with the hugely complex optimal solution.
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多用户特征模传输下行多用户MIMO-OFDMA系统余量自适应资源分配
本文研究了在发射机信道状态信息完备的情况下,下行链路多用户多输入多输出正交频分多址(MIMO-OFDMA)余量自适应多用户特征模传输系统。在余量自适应目标中,基站必须在发射功率最小的前提下满足用户的个体服务质量约束。由于来自同一子载波上不同用户的多个流会造成流间干扰,迫使使用低复杂度波束形成技术,使其成为一个联合波束形成和资源分配问题,因此解决方案很难实现。我们提出了一种次优的两步解决方案,将波束形成与子载波和功率分配解耦。首先减少用户组的数量,然后将问题化为一个凸优化问题。最后提出了一种有效的子载波分配算法。仿真结果表明,该方法具有相当的性能。
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