Scheduling strategies for multiuser MIMO OFDM systems with limited feedback

E. Conte, S. Tomasin, N. Benvenuto
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引用次数: 3

Abstract

In a cellular system with partial channel state information, i.e. with limited feedback, and multiple antennas, we consider scheduling of downlink transmissions at the base station using beamforming and orthogonal frequency division multiplexing. As the complexity of optimal scheduling for throughput maximization under quality of service constraints grows exponentially with the number of subcarriers, in this paper we propose two low complexity suboptimal techniques. The first is a greedy iterative strategy that at each step selects one user with the aim of maximizing the weighted sum rate (WSR), without the need of recomputing the beamformer. We next propose a pre-selection strategy that removes from the selection process users that do not provide an increase in the WSR, thus speeding the search. Both complexity and performance of the proposed techniques are evaluated and compared with existing solutions in a long-term evolution 3GPP scenario.
有限反馈多用户MIMO OFDM系统的调度策略
在具有部分信道状态信息(即有限反馈)和多天线的蜂窝系统中,我们考虑了使用波束形成和正交频分复用技术来调度基站的下行传输。针对服务质量约束下吞吐量最大化优化调度的复杂度随子载波数量呈指数增长的问题,提出了两种低复杂度的次优调度技术。首先是一种贪婪迭代策略,在不需要重新计算波束形成器的情况下,每步选择一个用户,以最大化加权和率(WSR)为目标。接下来,我们提出一种预选择策略,从选择过程中删除不提供WSR增加的用户,从而加快搜索速度。在长期演进的3GPP场景中,对所提出技术的复杂性和性能进行了评估,并与现有解决方案进行了比较。
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