2014 IEEE GLOBAL COMMUNICATIONS CONFERENCE (GLOBECOM 2014)(2014)
Samsung Res Amer Dallas SRAD
被引用14|浏览40
摘要
Full-dimension multiple-input multiple-output (FD-MIMO) systems, in which base stations are equipped with a large number of antennas in a two-dimensional panel, has received considerable attention from academia researchers and industry practitioners. Compared with legacy cellular communication systems, FD-MIMO systems can achieve significantly higher spectral efficiency with high order multi-user MIMO (MU-MIMO) transmissions. However, as high-order MU-MIMO also incurs high precoding and scheduling complexity, it is critical to reduce complexity of these operations in order to realize throughput potential of FD-MIMO systems in practice. In this paper, we propose a reduced complexity algorithm to realize the high performance precoding technique, signal-to-leakage plus noise ratio (SLNR) precoding, and propose an efficient scheduling algorithm to enable high-order MU-MIMO transmissions in FD-MIMO systems. We further demonstrate the effectiveness of the proposed algorithms by using system level simulations.
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关键词
MIMO communication,antenna arrays,cellular radio,computational complexity,multi-access systems,precoding,telecommunication scheduling,FD-MIMO system,MU-MIMO transmission,SLNR precoding,antenna,base station,cellular communication system,full-dimension MIMO system,full-dimension multiple input multiple output system,multiuser MIMO transmission,precoding complexity reduction,scheduling algorithm,signal-to-leakage plus noise ratio precoding,spectral efficiency,system level simulation,two-dimensional panel