On the Throughput of Broadcast Channels with Imperfect CSI

A. Vakili, B. Hassibi
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引用次数: 9

Abstract

In a broadcast channel in which one transmitter provides independent streams of data for n receivers, the amount of channel state information (CSI) at the transmitter can affect the capacity region dramatically. Having the accurate SNR of all users at the transmitter, the opportunistic strategy can be used to maximize the throughput (sum-rate) of the system. However, evaluating the SNR is basically an estimation problem at the receiver which in practice is not error free. In this paper, we analyze the effect of the noisy estimation of SNR on the throughput of a broadcast channel. We propose a modified opportunistic scheme in which the transmitter serves the user with the highest estimated SNR, but backs off on the transmit rate based on the variance of the estimation error. This scheme can achieve the maximum achievable rate while the CSI is limited to a noisy estimation of channel coefficients. We obtain the optimum rate back off and find the asymptotic behavior of the throughput under the scheduling scheme we have proposed. We show that the effect of a nonzero estimation error variance can be modeled as an SNR hit proportional to this variance
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不完全CSI下广播信道的吞吐量研究
在一个发射机为n个接收机提供独立数据流的广播信道中,发射机的信道状态信息(CSI)的数量会显著影响容量区域。有了发射机所有用户的准确信噪比,机会策略可以用来最大化系统的吞吐量(和速率)。然而,信噪比的评估基本上是一个接收机的估计问题,在实践中不是没有误差的。本文分析了信噪比的噪声估计对广播信道吞吐量的影响。我们提出了一种改进的机会方案,其中发射机以最高的估计信噪比为用户服务,但根据估计误差的方差退出传输速率。该方案可以实现最大可达速率,而CSI仅局限于信道系数的噪声估计。在所提出的调度方案下,我们得到了最优退场率,并得到了吞吐量的渐近行为。我们表明,非零估计误差方差的影响可以建模为与该方差成比例的信噪比命中
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