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Weighted-Sum-Rate-Maximizing Linear Transceiver Filters for the K-User MIMO Interference Channel

机译:K用户MIMO干扰信道的加权总和最大速率线性收发器滤波器

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摘要

This letter is concerned with transmit and receive filter optimization for the K-user MIMO interference channel. Specifically, linear transmit and receive filter sets are designed which maximize the weighted sum rate while allowing each transmitter to utilize only the local channel state information. Our approach is based on extending the existing method of minimizing the weighted mean squared error (MSE) for the MIMO broadcast channel to the K-user interference channel at hand. For the case of the individual transmitter power constraint, however, a straightforward generalization of the existing method does not reveal a viable solution. It is in fact shown that there exists no closed-form solution for the transmit filter but simple one-dimensional parameter search yields the desired solution. Compared to the direct filter optimization using gradient-based search, our solution requires considerably less computational complexity and a smaller amount of feedback resources while achieving essentially the same level of weighted sum rate. A modified filter design is also presented which provides desired robustness in the presence of channel uncertainty.
机译:这封信与K用户MIMO干扰信道的发射和接收滤波器优化有关。具体地说,设计了线性发射和接收滤波器组,它们在允许每个发射机仅利用本地信道状态信息的同时,最大化了加权和速率。我们的方法基于将现有的最小化MIMO广播信道的加权均方误差(MSE)的方法扩展到当前的K用户干扰信道。然而,对于单个发射机功率约束的情况,现有方法的直接概括不能揭示可行的解决方案。实际上表明,对于发送滤波器不存在封闭形式的解决方案,但是简单的一维参数搜索可以得出所需的解决方案。与使用基于梯度的搜索进行直接滤波器优化相比,我们的解决方案所需的计算复杂度大大降低,反馈资源数量也更少,同时实现了基本相同的加权求和率水平。还提出了一种改进的滤波器设计,其在存在信道不确定性的情况下提供了所需的鲁棒性。

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