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首页> 外文期刊>IEEE Transactions on Communications >Unquantized and uncoded channel state information feedback in multiple-antenna multiuser systems
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Unquantized and uncoded channel state information feedback in multiple-antenna multiuser systems

机译:多天线多用户系统中未量化和未编码的信道状态信息反馈

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We propose a channel state information (CSI) feedback scheme based on unquantized and uncoded (UQ-UC) transmission. We consider a system where a mobile terminal obtains the downlink CSI and feeds it back to the base station using an uplink feedback channel. If the downlink channel is an independent Rayleigh fading channel, then the CSI may be viewed as an output of a complex independent identically distributed Gaussian source. Further, if the uplink feedback channel is an additive white Gaussian noise channel, and the downlink CSI is perfectly known at the mobile terminal, it can be shown that UQ-UC CSI transmission (that incurs zero delay) is optimal in that it achieves the same minimum mean-squared error distortion as a scheme that optimally (in the Shannon sense) quantizes and encodes the CSI, while theoretically incurring infinite delay. Since the UQ-UC transmission is suboptimal on correlated wireless channels, we propose a simple linear CSI feedback receiver that can be used to improve the performance of UQ-UC transmission while still retaining the attractive zero-delay feature. We provide bounds on the performance of such UQ-UC CSI feedback and study its impact on the achievable information rates. Furthermore, we explore its application and performance in multiple-antenna multiuser wireless systems, and also propose a corresponding pilot-assisted channel-state estimation scheme.
机译:我们提出了一种基于未量化和未编码(UQ-UC)传输的信道状态信息(CSI)反馈方案。我们考虑一种系统,其中移动终端获得下行链路CSI,并使用上行链路反馈信道将其反馈给基站。如果下行链路信道是独立的瑞利衰落信道,则可以将CSI视为复杂的独立的,均匀分布的高斯源的输出。此外,如果上行链路反馈信道是加性高斯白噪声信道,并且下行链路CSI在移动终端上是众所周知的,则可以证明UQ-UC CSI传输(产生零延迟)是最佳的,因为它可以实现与最小均方误差失真相同的方案,该方案可以最佳地(在Shannon意义上)对CSI进行量化和编码,而在理论上会产生无限延迟。由于UQ-UC传输在相关无线信道上次优,因此我们提出了一种简单的线性CSI反馈接收器,可用于提高UQ-UC传输的性能,同时仍保留诱人的零延迟功能。我们对此类UQ-UC CSI反馈的性能提供了界限,并研究了其对可达到的信息速率的影响。此外,我们探索了其在多天线多用户无线系统中的应用和性能,并提出了一种相应的导频辅助信道状态估计方案。

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