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Gradient-Based Power Minimization in MIMO Broadcast Channels With Linear Precoding

机译:具有线性预编码的MIMO广播信道中基于梯度的功率最小化

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We study the problem of minimizing the sum transmit power in mutliple-input multiple-output (MIMO) downlink channels with linear transceivers if per-user quality of service (QoS) constraints (expressed in terms of rates) have to be fulfilled. To find a suboptimal solution of the arising non-convex optimization problem, we introduce new auxiliary variables representing the division of the per-user rate constraints into per-stream rate targets, and we optimize these variables by means of gradient-projection steps. This new method is combined with alternating updates of the transmit and receive filters. Furthermore, the proposed algorithm ensures that the mean square error (MSE) matrices of all users are diagonal, and in the course of the execution of the algorithm, it is possible that inactive streams get activated if this leads to a decreased sum transmit power. In numerical simulations, the new algorithm turns out to be superior to the various existing methods since these methods either lead to a higher sum transmit power than the proposed scheme or have a higher computational complexity or make restrictive assumptions on the system parameters.
机译:如果必须满足每个用户的服务质量(QoS)约束(以速率表示),我们将研究在具有线性收发器的多输入多输出(MIMO)下行链路信道中最小化总发射功率的问题。为了找到出现的非凸优化问题的次优解决方案,我们引入了新的辅助变量来表示将每个用户速率约束划分为每个流速率目标,然后通过梯度投影步骤优化这些变量。这种新方法与发送和接收过滤器的交替更新结合在一起。此外,所提出的算法确保所有用户的均方误差(MSE)矩阵是对角线的,并且在算法执行过程中,如果无效流导致降低的总发射功率,则有可能激活非活动流。在数值模拟中,新算法被证明优于各种现有方法,因为这些方法要么导致比所提出的方案更高的总发射功率,要么具有更高的计算复杂度,或者对系统参数进行限制性假设。

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