低复杂度MIMO系统的近最优天线分配

M. Torabzadeh, Yusheng Ji
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引用次数: 4

摘要

针对多输入多输出(MIMO)蜂窝系统下行链路,开发高性能、低复杂度的调度程序具有挑战性。在用户和基站之间集中选择可用信道使问题变得复杂。组合优化算法是解决这一问题的一种方法。在这种情况下,调度可以在两个不同的阶段完成。第一个阶段是用户选择,调度程序根据自己的标准选择一组用户。该分配方案将选择的用户分配到发射天线上,并考虑到第二阶段调度的容量最大化。在这种调度器中,与用户满意度、公平性、物理层参数和/或流量到达过程相关的考虑因素可以以较低的复杂性实现。对于第二阶段,我们提出了一种接近最优、低复杂度的分配方案,称为顶二最大差(MDTT)。考虑用户移动性的深入仿真研究表明,我们的分配方案具有优越的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Near Optimal Antenna Assignment for MIMO Systems with Low Complexity
High performance, low complexity schedulers are challenging to develop for the downlink of multiple-input multiple-output (MIMO) cellular systems. Selection among available channels between users and the base station in a centralized way makes the problem complex. An approach to solve this problem is combinatorial optimization algorithms. In this case, the scheduling can be done in two different phases. The first phase is the user selection in which the scheduler selects a group of users based on its own criterion. The assignment scheme assigns the selected users to the transmit antennas, taking into consideration the capacity maximization in the second phase of the scheduling. Considerations related to user satisfaction, fairness, physical layer parameters, and/or traffic arrival processes in this kind of scheduler can be implemented with low complexity. For the second phase, we propose a near-optimal, low-complexity, assignment scheme, called the max difference of top two (MDTT). An intensive simulation study taking into account the mobility of users shows the superior performance of our assignment scheme.
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