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An Iteratively Weighted MMSE Approach to Distributed Sum-Utility Maximization for a MIMO Interfering Broadcast Channel

机译:MIMO干扰广播信道的分布式求和效用最大化的迭代加权MMSE方法

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Consider the multiple-input multiple-output (MIMO) interfering broadcast channel whereby multiple base stations in a cellular network simultaneously transmit signals to a group of users in their own cells while causing interference to each other. The basic problem is to design linear beamformers that can maximize the system throughput. In this paper, we propose a linear transceiver design algorithm for weighted sum-rate maximization that is based on iterative minimization of weighted mean-square error (MSE). The proposed algorithm only needs local channel knowledge and converges to a stationary point of the weighted sum-rate maximization problem. Furthermore, the algorithm and its convergence can be extended to a general class of sum-utility maximization problem. The effectiveness of the proposed algorithm is validated by numerical experiments.
机译:考虑多输入多输出(MIMO)干扰广播信道,由此蜂窝网络中的多个基站同时向自己小区中的一组用户发送信号,同时引起彼此干扰。基本问题是设计可以使系统吞吐量最大化的线性波束形成器。本文中,我们提出了一种基于加权均方误差(MSE)迭代最小化的线性收发器设计算法,用于加权求和速率最大化。所提出的算法只需要本地信道知识,并收敛到加权和率最大化问题的平稳点。此外,该算法及其收敛性可以扩展到一类总和效用最大化问题。数值实验验证了该算法的有效性。

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