Field trial results on multi-user MIMO downlink OFDMA in typical outdoor scenario using proportional fair scheduling

V. Venkatkumar, T. Haustein, H. Wu, E. Schulz, T. Wirth, A. Forck, S. Wahls, V. Jungnickel
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引用次数: 6

Abstract

In this paper we present rest real-time outdoor multi-user multi-antenna measurements based on system parameters close to 3GPP-long term evolution. We demonstrate switching between various transmission modes in the downlink steered by a quantized feedback channel. Real time results show that an OFDMA proportional fair scheduler based on the quantized feedback achieves significant performance gains over axed OFDM-TDMA system. However, the proportional fair scheduler results in user starvation periods in the event of correlated feedbacks. To this end, we formulate a downlink scheduling problem with zero-starvation as a short term fairness in Kulkami, S.S., et al (2003) objective. This is an integer programming (IP) problem. In this paper, we present a simple heuristic algorithm for this problem for K = 2 users. Significant system sum rate gains are shown while still fulfilling the fairness objective.
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多用户MIMO下行OFDMA在典型室外场景下采用比例公平调度的现场试验结果
在本文中,我们提出了基于接近3gpp长期演进的系统参数的静态实时室外多用户多天线测量。我们演示了在由量化反馈信道控制的下行链路中各种传输模式之间的切换。实时结果表明,基于量化反馈的OFDMA比例公平调度器比轴式OFDM-TDMA系统获得了显著的性能提升。然而,比例公平调度器在相关反馈事件中会导致用户饥饿期。为此,我们在Kulkami, s.s.等人(2003)的目标中提出了一个零饥饿的下行链路调度问题作为短期公平性。这是一个整数规划(IP)问题。对于K = 2个用户,我们给出了一个简单的启发式算法。在实现公平性目标的同时,显示了显著的系统总和速率增益。
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