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Novel combinatorial results on downlink MU-MIMO scheduling with applications

机译:新颖的组合结果对下行链路MU-MIMO调度的应用

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In this paper we consider the classical problem of downlink (DL) multiuser (MU) multi-input-multi-output (MIMO) scheduling with linear transmit precoding. This problem was formulated over a decade ago and has been deeply studied since then. Moreover, MU-MIMO with linear transmit precoding is being increasingly pursued as a key technology by the industry, with a strong emphasis on efficient scheduling algorithms. However, the intractable combinatorial nature of the problem has mostly restricted algorithm design to the realm of simple greedy heuristics. Such algorithms do not exploit any underlying structure in the problem. Recently, it has been formally shown that in general this problem is even hard to approximate. Our significant contribution in this work is to consider the practically most important choices of linear precoding and power allocation and show that the resulting problems can be cast as ones where a difference of two submodular set functions has to be maximized. This opens up a new framework for MU-MIMO scheduler design. We use this framework to design an algorithm and demonstrate that significant gains can be achieved at a reasonable complexity. Our framework can also incorporate analog receive beamforming which is deemed to be essential in mmWave MIMO systems.
机译:在本文中,我们考虑使用线性发射预编码的下行链路(DL)多用户(MU)多输入多输出(MIMO)调度的经典问题。这一问题在十年前制定了在十年前制定,从那时起已经深入研究过。此外,具有线性传输预编码的MU-MIMO正在越来越追求作为业界的关键技术,强调有效的调度算法。然而,问题的顽固组合性质主要限制了算法设计到简单贪婪启发式的境界。此类算法不会利用问题中的任何潜在结构。最近,它已经正式表明,通常情况下,这个问题甚至难以近似。我们在这项工作中的重大贡献是考虑实际上是线性预编码和功率分配的最重要选择,并表明所产生的问题可以作为必须最大化的两个子模具集功能的差异的差异。这为MU-MIMO调度程序设计开辟了一个新的框架。我们使用此框架来设计算法,并证明可以以合理的复杂性实现显着的增益。我们的框架还可以包含模拟接收波束成形,被认为是MMWAVE MIMO系统中必需的。

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