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Scheduling and Power Allocation Dampens the Negative Effect of Channel Misreporting in Massive MIMO

机译:调度和功率分配抑制了大规模MIMO中信道误报的负面影响

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We study the sensitivity of multi-user scheduling performance to channel magnitude misreporting in systems with massive antennas. We consider the round-robin scheduler combined with max-min and waterfilling power controls, respectively. We show that user scheduling combined with power allocation, in general, dampens the negative effect of channel misreporting compared to the purely physical layer analysis of channel misreporting without scheduling. We discover several interesting results. First, we observe a periodicity in rate-loss behavior as the number of misreporting users increases. Second, we find that the waterfilling power control is more robust to channel misreporting compared with max-min power control. Third, for homogeneous users with equal average signal-to-noise ratios (SNRs), channel underreporting is harmful but overreporting is beneficial for max-min power control; the opposite impact is found for waterfilling power control. For heterogeneous users with various average SNRs, however, both underreporting and overreporting harm the system for both power control policies, demonstrating the complex interactions across network layers due to channel misreporting.
机译:我们研究了多用户调度性能对具有大规模天线的系统中误报误报的敏感性。我们考虑循环调度器,分别与MAX-MIN和水填充功率控制相结合。我们表明,与电力分配相结合的用户调度,通常,与频道误报的纯物理层分析相比,频道误报的负面影响而无需调度。我们发现几个有趣的结果。首先,随着误报用户的数量增加,我们观察速率损失行为的周期性。其次,与MAX-MIN电源控制相比,水填充功率控制更加坚固,以渠道误报。第三,对于具有相同平均信噪比(SNR)的同类用户,渠道潜冲额外是有害的,但过度报销对MAX-MIN功率控制有益;找到了水填充功率控制的相反影响。然而,对于具有各种平均SNR的异构用户,泄露和过度报告损害了系统的损害了电源控制策略,展示了由于信道误报引起的网络层跨网络层的复杂交互。

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