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Channel Prediction for Limited Feedback Precoded MIMO-OFDM Systems over Time-varying Fading Channels

机译:通过时变衰落通道的有限反馈预编码MIMO-OFDM系统的信道预测

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Conventional limited feedback precoded MIMO-OFDM systems generally focus on time-invariant channels throughout transmission. As a result, the optimal precoding matrix can be found during the training blocks and employed over the subsequent data blocks. In contrast to the conventional systems, we consider systems in high mobility environments where the channels vary from one OFDM block to another. In such a scenario, the precoding matrix derived by the receiver based on the previous OFDM block is outdated, which may incur significant system performance degradation. To circumvent this obstacle, a Kalman-filter based channel prediction scheme is proposed for the receiver by modeling the precoding matrices and channel vectors as nonlinear and linear channel parameters of the time-domain received signal, respectively. Based on the predicted channel state information, the optimal precoding matrix for the next OFDM block is selected and returned to the transmitter. Simulation results confirm that precoded MIMO-OFDM systems with the proposed channel prediction can achieve robust performance even over fast time-varying channels.
机译:传统的有限反馈预编码MIMO-OFDM系统通常专注于整个传输的时间不变通道。结果,可以在训练块期间找到最佳预编码矩阵并在后续数据块上使用。与传统系统相比,我们考虑在高移动性环境中的系统,其中通道从一个OFDM块变化到另一个。在这样的场景中,基于先前OFDM块的接收器导出的预编码矩阵已经过时,这可能产生重大的系统性能下降。为了避免这种障碍,通过将预编码矩阵和信道向量建模分别为时域接收信号的非线性和线性信道参数来提出基于卡尔曼滤波器的信道预测方案。基于预测的信道状态信息,选择下一个OFDM块的最佳预编码矩阵并返回到发射器。仿真结果证实,具有所提出的信道预测的预编码MIMO-OFDM系统即使在快速时变通道上也可以实现鲁棒性能。

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