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Multiple-Antenna Signaling Over Fading Channels With Estimated Channel State Information: Capacity Analysis

机译:具有估计信道状态信息的衰落信道上的多天线信令:容量分析

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Multiple-antenna concepts for wireless communication systems promise high spectral efficiencies and improved error rate performance by proper exploitation of the randomness in multipath propagation. In this paper, we investigate the impact of channel uncertainty caused by channel estimation errors on the capacity of Rayleigh and Ricean block-fading channels. We consider a training-based multiple-antenna system that reserves a portion of time to sound the channel. The training symbols are used to estimate the channel state information (CSI) at the receiver by means of an arbitrary linear estimation filter. No CSI is assumed at the transmitter. Our analysis is based on an equivalent system model for training-based multiple-antenna systems which specifies the channel by the estimated (and hence, known) channel coefficients and an uncorrelated, data-dependent, multiplicative noise. This model includes the special cases of perfect CSI and no CSI. We present new upper and lower bounds on the maximum instantaneous mutual information to compute ergodic and outage capacities, and extend previous results to arbitrary (and possibly mismatched) linear channel estimators and to correlated Ricean fading. Several numerical results for single- and multiple-antenna systems with estimated CSI are included as illustration.
机译:通过适当地利用多径传播中的随机性,无线通信系统的多天线概念可保证较高的频谱效率和改善的误码率性能。在本文中,我们研究了由信道估计误差引起的信道不确定性对瑞利和赖斯块衰落信道容量的影响。我们考虑一个基于训练的多天线系统,该系统保留了一部分时间来使频道发声。训练符号用于借助于任意线性估计滤波器来估计接收机处的信道状态信息(CSI)。发射机不假定CSI。我们的分析基于基于训练的多天线系统的等效系统模型,该模型通过估计的(因此已知的)信道系数和不相关的,依赖数据的乘法噪声来指定信道。此模型包括完美CSI和无CSI的特殊情况。我们提出了关于最大瞬时互信息的新上限和下限,以计算遍历和中断能力,并将先前的结果扩展到任意(可能不匹配)线性信道估计器以及相关的Ricean衰落。作为说明,包含了带有估计CSI的单天线和多天线系统的一些数值结果。

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