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Iterative Channel Estimation Using Virtual Pilot Signals for MIMO-OFDM Systems

机译:MIMO-OFDM系统中使用虚拟导频信号的迭代信道估计

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The number of transmit and receive antennas in multi-input multi-output (MIMO) systems is increasing rapidly to enhance the throughput and reliability of next-generation wireless systems. Benefits of large size MIMO systems, however, can be realized only when the quality of estimated channels is ensured at the transmitter and receiver side alike. In this paper, we introduce a new decision-directed channel estimation technique dealing with pilot shortage in the MIMO-OFDM systems. The proposed channel estimator uses soft symbol decisions obtained by iterative detection and decoding (IDD) scheme to enhance the quality of channel estimate. Using the soft information from the decoders, the proposed channel estimator selects reliable data tones, subtracts interstream interferences, and performs re-estimation of the channels. We analyze the optimal data tone selection criterion, which accounts for the reliability of symbol decisions and correlation of channels between the data tones and pilot tones. From numerical simulations, we show that the proposed channel estimator achieves considerable improvement in system performance over the conventional channel estimators in realistic MIMO-OFDM scenarios.
机译:多输入多输出(MIMO)系统中的发射和接收天线的数量正在迅速增加,以增强下一代无线系统的吞吐量和可靠性。然而,只有当在发射机和接收机侧都确保估计信道的质量时,才能实现大型MIMO系统的优势。在本文中,我们介绍了一种新的基于决策的信道估计技术,该技术可解决MIMO-OFDM系统中的导频短缺问题。所提出的信道估计器使用通过迭代检测和解码(IDD)方案获得的软符号判决来增强信道估计的质量。利用来自解码器的软信息,所提出的信道估计器选择可靠的数据音调,减去流间干扰,并执行信道的重新估计。我们分析了最佳数据音调选择标准,该标准考虑了符号决策的可靠性以及数据音调与导频音调之间通道的相关性。从数值模拟中,我们表明,在现实的MIMO-OFDM场景中,与传统的信道估计器相比,所提出的信道估计器在系统性能上实现了相当大的提高。

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