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Linear Precoder and Equalizer Design for Uplink Multiuser MIMO Systems with Imperfect Channel State Information

机译:具有不完善信道状态信息的上行多用户MIMO系统的线性预编码器和均衡器设计

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This paper considers a joint design of linear precoders and equalizers for uplink multiuser multiple-input multiple-output communications systems over uncorrelated flat-fading channels with imperfect channel state information at both the transmitters and the receivers. By minimizing the mean square error (MSE) of all users, or equivalently the sum-MSE, under a sum-power constraint, we model the linear transceiver design as an optimization problem. Instead of relying on complex iterative algorithms, the authors propose a low-complexity, non-iterative but close-to-optimal precoder design solution by relaxing the problem into a simpler convex optimization problem. In this way, a closed-form linear transceiver structure can be derived by using the Karush-Kuhn-Tucker (KKT) optimality conditions. Based on the closed-form solution and random matrix theory, the authors obtain a simple asymptotic expression on the average sum-MSE, which can provide useful design insights.
机译:本文考虑了在不相关的平坦衰落信道上具有不完善的信道状态信息的上行链路多用户多输入多输出通信系统的线性预编码器和均衡器的联合设计,该状态在发送器和接收器处均具有不完善的信道状态信息。通过在求和功率约束下最小化所有用户的均方误差(MSE)或等效地求和MSE,我们将线性收发器设计建模为一个优化问题。作者不依赖复杂的迭代算法,而是通过将问题简化为更简单的凸优化问题,提出了一种低复杂度,非迭代但接近最佳的预编码器设计解决方案。通过这种方式,可以通过使用Karush-Kuhn-Tucker(KKT)最优性条件得出闭合形式的线性收发器结构。基于闭式解和随机矩阵理论,作者在平均和-MSE上获得了一个简单的渐近表达式,可以提供有用的设计见解。

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