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Spatial Transmission Mode Switching in Multiuser MIMO-OFDM Systems With User Fairness

机译:具有用户公平性的多用户MIMO-OFDM系统中的空间传输模式切换

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摘要

Multiantenna radio systems allow accessing the channel in diversity or spatial multiplexing (SMUX) mode. Adequate switching between these modes according to current channel conditions was shown to yield significant performance improvements while requiring little feedback from the receiving side. We present a transmission concept for the downlink of a multiuser multiple-input–multiple-output orthogonal frequency-division-multiplexing (MU-MIMO-OFDM) system aiming at high user rates with limited feedback demands. An extended score-based scheduling (SB) approach ensures fair-resource allocation to the users, whereas transmission mode switching is used to guarantee high user rates. The degree of fairness of the scheduler can be adapted by adequately configuring a weighting function for the scores. Comparison with single-mode schemes reveals substantial throughput gains of the adaptive switching concept. Furthermore, targeting maximum throughput, we show that a considerable proportion of the capacity of the MIMO broadcast channel (BC) can be achieved with a comparatively low amount of required feedback.
机译:多天线无线电系统允许以分集或空间复用(SMUX)模式访问信道。已经证明,根据当前的信道条件在这些模式之间进行足够的切换可以显着提高性能,同时几乎不需要接收端的反馈。我们提出了一种针对高用户速率和有限反馈需求的多用户多输入多输出正交频分复用(MU-MIMO-OFDM)系统的下行链路传输概念。扩展的基于分数的调度(SB)方法可确保为用户分配公平的资源,而传输模式切换可确保较高的用户速率。调度程序的公平程度可以通过为得分适当配置加权函数来进行调整。与单模方案的比较揭示了自适应交换概念的显着吞吐量提高。此外,以最大吞吐量为目标,我们表明,在所需反馈量较低的情况下,可以实现MIMO广播信道(BC)容量的很大一部分。

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