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Downlink Opportunistic Scheduling with Low-Rate Channel State Feedback: Error Rate Analysis and Optimization of the Feedback Parameters

机译:低速率信道状态反馈的下行机会调度:误码率分析和反馈参数优化

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摘要

In this paper, the downlink opportunistic scheduling approach is studied in a multiuser environment with single-antenna transmitter and users. Exact bit error rate (BER) expressions are derived under the assumptions of full and quantized channel state information (CSI) at the transmitter. These expressions are then used to optimize the channel state feedback parameters. Moreover, asymptotic BERs are investigated in the limiting cases of a high signal-to-noise ratio (SNR) and a large number of users K. It is shown that both under the full and quantized CSI assumptions, the achieved BER is proportional to SNR^{-K} and K^{-SNR} in these two asymptotic cases, respectively. This means that the diversity order is equal to K, whereas the multiuser diversity gain is equal to SNR. In the case when the CSI feedback is quantized, the impact of feedback errors on the achieved BER is studied. It is shown that the opportunistic scheduling can greatly improve the BER performance even if the feedback is quite low-rate and erroneous.
机译:在本文中,研究了在具有单天线发射机和用户的多用户环境中的下行链路机会调度方法。精确的误码率(BER)表达式是在发射机处具有完整和量化的信道状态信息(CSI)的假设下得出的。这些表达式然后用于优化信道状态反馈参数。此外,在高信噪比(SNR)和大量用户K的极限情况下,研究了渐近BER。表明,在完全和量化CSI假设下,获得的BER与SNR成正比。在这两个渐近情况下分别为^ {-K}和K ^ {-SNR}。这意味着分集阶数等于K,而多用户分集增益等于SNR。在对CSI反馈进行量化的情况下,研究了反馈错误对获得的BER的影响。结果表明,即使反馈速率很低且错误,机会调度也可以大大提高BER性能。

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