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Fast convergence for efficient beamforming in massive MIMO heterogeneous networks

机译:快速收敛,可在大规模MIMO异构网络中高效地进行波束成形

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Massive multiple-input multiple-output (MIMO) is an emerging technology, which is an enabler for future broadband wireless networks that support connection of the internet of people and internet of things. The use of massive MIMO base stations and heterogeneous networks offers an increase in throughput without increasing the bandwidth, but with reduced power consumption. This makes the two technologies very attractive for future wireless mobile communication systems. We investigate the optimization problem of maximizing the data rate whilst mitigating inter-tier interference for macrocell users in a typical heterogeneous network. We present a first-order solution for maximizing the weighted sum rate of the macrocell users. The proposed method uses the matrix stuffing technique and the alternative direction method of multipliers to efficiently transform and solve the optimization problem, respectively. Simulation results of a single-cell heterogeneous network show that the solution gives near-optimal performance, which is achieved by state-of-the-art modelling languages and second-order solvers for an increased number of antennas at the macrocell base station. The proposed method converges much faster than the interior-point methods, which makes it attractive for practical implementation.
机译:大规模多输入多输出(MIMO)是一项新兴技术,它是支持宽带宽带无线网络的支持者,该宽带无线网络支持人联网和物联网的连接。大规模MIMO基站和异构网络的使用在不增加带宽的情况下增加了吞吐量,但是却降低了功耗。这使得这两种技术对于未来的无线移动通信系统非常有吸引力。我们研究了在典型异构网络中为宏小区用户减轻层间干扰的同时最大化数据速率的优化问题。我们提出了一种用于最大化宏小区用户的加权和速率的一阶解决方案。该方法利用矩阵填充技术和乘法器的交替方向方法分别有效地变换和解决了优化问题。单小区异构网络的仿真结果表明,该解决方案提供了近乎最佳的性能,这是通过最新的建模语言和用于解决宏小区基站天线数量增加的二阶求解器来实现的。所提出的方法收敛速度比内点方法快得多,这使其在实际实施中具有吸引力。

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