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首页> 外文期刊>IEEE Transactions on Signal Processing >Transmit Signal Design for Optimal Estimation of Correlated MIMO Channels
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Transmit Signal Design for Optimal Estimation of Correlated MIMO Channels

机译:用于相关MIMO信道的最佳估计的发射信号设计

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We address optimal estimation of correlated multiple-input multiple-output (MIMO) channels using pilot signals, assuming knowledge of the second-order channel statistics at the transmitter. Assuming a block fading channel model and minimum mean square error (MMSE) estimation at the receiver, we design the transmitted signal to optimize two criteria: MMSE and the conditional mutual information between the MIMO channel and the received signal. Our analysis is based on the recently proposed virtual channel representation, which corresponds to beamforming in fixed virtual directions and exposes the structure and the true degrees of freedom in the correlated channel. However, our design framework is applicable to more general channel models, which include known channel models, such as the transmit and receive correlated model, as special cases. We show that optimal signaling is in a block form, where the block length depends on the signal-to-noise ratio (SNR) as well as the channel correlation matrix. The block signal corresponds to transmitting beams in successive symbol intervals along fixed virtual transmit angles, whose powers are determined by (nonidentical) water filling solutions based on the optimization criteria. Our analysis shows that these water filling solutions identify exactly which virtual transmit angles are important for channel estimation. In particular, at low SNR, the block length reduces to one, and all the power is transmitted on the beam corresponding to the strongest transmit angle, whereas at high SNR, the block length has a maximum length equal to the number of active virtual transmit angles, and the power is assigned equally to all active transmit angles. Consequently, from a channel estimation viewpoint, a faster fading rate can be tolerated at low SNRs relative to higher SNRs.
机译:假设了解发射机的二阶信道统计信息,我们将使用导频信号解决相关多输入多输出(MIMO)信道的最佳估计问题。假设在接收机处采用块衰落信道模型和最小均方误差(MMSE)估计,我们设计发送信号以优化两个标准:MMSE和MIMO信道与接收信号之间的条件互信息。我们的分析基于最近提出的虚拟通道表示,它对应于固定虚拟方向上的波束成形,并揭示了相关通道中的结构和真实的自由度。但是,我们的设计框架适用于更通用的信道模型,其中包括已知的信道模型,例如特殊情况下的发射和接收相关模型。我们表明,最佳信令采用的是块形式,其中块长度取决于信噪比(SNR)以及信道相关矩阵。块信号对应于沿着固定的虚拟发射角度的连续符号间隔中的发射波束,其功率由(不同的)注水解决方案根据优化标准确定。我们的分析表明,这些注水解决方案可以准确地确定哪些虚拟发射角对于通道估计很重要。特别是,在低SNR时,块长度减小到1,并且所有功率都在对应于最强发射角的波束上发射,而在高SNR时,块长度的最大长度等于有效虚拟发射的次数角度,功率被平均分配给所有有效发射角度。因此,从信道估计的观点来看,相对于较高的SNR,可以在较低的SNR下容许更快的衰落速率。

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