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Rate Balancing for Multiuser MIMO Systems

机译:多用户MIMO系统的速率平衡

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摘要

We investigate and solve the rate balancing problem in the downlink for a multiuser Multiple-Input- Multiple-Output (MIMO) system. In particular, we adopt a transceiver structure to maximize the worst-case rate of the user while satisfying a total transmit power constraint. Most of the existing solutions either perform user Mean Squared Error (MSE) balancing or streamwise rate balancing, which is suboptimal in the MIMO case. The original rate balancing problem in the downlink is complicated due to the coupled structure of the transmit filters. This optimization problem is here solved in an alternating manner by exploiting weighted MSE uplink/downlink duality with proven convergence to a local optimum. Simulation results are provided to validate the proposed algorithm and demonstrate its performance improvement over unweighted MSE balancing.
机译:我们研究并解决了多用户多输入多输出(MIMO)系统下行链路中的速率平衡问题。特别是,我们采用收发器结构来最大化用户的最坏情况发生率,同时满足总发射功率约束。大多数现有解决方案要么执行用户均方误差(MSE)平衡,要么执行流速率平衡,这在MIMO情况下是次优的。下行链路中的原始速率平衡问题由于发射滤波器的耦合结构而变得复杂。在此,通过利用加权MSE上/下链路对偶性以及经过验证的收敛到局部最优值,以交替方式解决此优化问题。仿真结果证明了该算法的有效性,并证明了该算法在非加权MSE平衡上的性能提高。

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