MU-MIMO beamforming with full-duplex open-loop training

Xu Du, John Tadrous, C. Dick, A. Sabharwal
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引用次数: 10

Abstract

In this paper, full-duplex radios are used to continuously update the channel state information at the transmitter, which is required to compute the downlink precoding matrix in MIMO broadcast channels. The full-duplex operation allows leveraging channel reciprocity for open-loop uplink training to estimate the downlink channels. However, the uplink transmission of training creates interference at the downlink receiving mobile nodes. We characterize the optimal training resource allocation and its associated spectral efficiency, in the proposed open-loop training based full-duplex system. We also evaluate the performance of the half-duplex counterpart to derive the relative gains of full-duplex training. Despite the existence of the inter-node interference due to full-duplex, significant spectral efficiency improvement is attained over half-duplex operation.
具有全双工开环训练的MU-MIMO波束形成
本文采用全双工无线电在发送端不断更新信道状态信息,这就需要计算MIMO广播信道的下行预编码矩阵。全双工操作允许利用开环上行训练的信道互易性来估计下行信道。然而,训练的上行传输在下行接收移动节点上产生干扰。我们描述了基于开环训练的全双工系统的最优训练资源分配及其相关的频谱效率。我们还评估了半双工对应物的性能,以得出全双工训练的相对增益。尽管由于全双工存在节点间干扰,但在半双工操作下,显著提高了频谱效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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