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Robust Scheduler Prioritizing UEs with Time-Variant Channels in Small-Delay Slots from Channel Estimation Timing for 5G Large-Scale MU-MIMO

机译:鲁棒的调度程序根据5G大规模MU-MIMO的信道估计时序在小延迟时隙中为具有时变信道的UE分配优先级

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In fifth-generation (5G) mobile communication systems, it is necessary to significantly increase system capacity compared with 4G in order to support rapidly increasing mobile data traffic. The multi-user (MU) MIMO, which spatially multiplexes multiple user equipments (UE) in the same time and frequency resource, is the most promising technology. We have been studying large-scale coordinated MIMO, which uses zero forcing (ZF) precoding at the transmitter side, for a distributed antenna system. However, channel mismatch between channel estimation timing and data transmission timing drastically degrades throughput performance. In this paper, we propose a novel scheduler that preferentially schedules high speed UEs in small-delay slots from channel estimation timing by exploiting the diversity in terms of UE moving speed. The proposed scheduling is realized by the signal to interference plus noise ratio (SINR) prediction from channel variation between two most recent channel estimates and by inputting the predicted SINR into the proportional fairness (PF) scheduler. Computer simulations show that the proposed method significantly improves the mean UE throughput for high speed UEs while keeping almost the same mean UE throughput for low speed UEs.
机译:在第五代(5G)移动通信系统中,与4G相比,有必要显着增加系统容量,以支持快速增长的移动数据流量。最有前途的技术是在同一时间和频率资源上对多个用户设备(UE)进行空间复用的多用户(MU)MIMO。我们一直在研究用于分布式天线系统的大规模协调MIMO,其在发射机侧使用零强迫(ZF)预编码。然而,信道估计定时和数据传输定时之间的信道失配极大地降低了吞吐量性能。在本文中,我们提出了一种新颖的调度器,该调度器通过利用UE移动速度方面的多样性,优先从信道估计时序中调度小延迟时隙中的高速UE。通过根据两个最近信道估计之间的信道变化对信号干扰加噪声比(SINR)进行预测,并将预测的SINR输入到比例公平(PF)调度程序中,可以实现建议的调度。计算机仿真表明,所提出的方法显着提高了高速UE的平均UE吞吐量,同时保持了几乎相同的低速UE的平均UE吞吐量。

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