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A New Iterative Doppler-Assisted Channel Estimation Joint With Parallel ICI Cancellation for High-Mobility MIMO-OFDM Systems

机译:高移动性MIMO-OFDM系统中具有并行ICI抵消的新型迭代多普勒辅助信道估计联合

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摘要

In this paper, we propose an iterative channel estimation and intercarrier interference (ICI) cancellation method for highly mobile users in long-term evolution (LTE) systems. The proposed scheme estimates the wireless channel by using pilot symbols, estimates of the data symbols, and Doppler spread information at the receiver. The wireless channel is expressed by weighted time-domain channel interpolation, where the interpolation weights are designed based on the Doppler spread and time-domain channel correlations. The channel estimates are obtained by employing a least-square (LS) method. A simplified parallel interference cancellation (PIC) scheme coupled with decision statistical combining (DSC) is used to cancel the ICI and to improve data symbol detection. These data symbols are then utilized to further refine the channel estimation iteratively. The simulation results show that the performance degradation of the proposed iterative channel estimation and ICI cancellation scheme in a high-mobility environment (e.g., normalized Doppler spread of 0.1), compared with the performance of a system when users are static and perfect channel state information (CSI) is available at the receiver, is minimal.
机译:在本文中,我们为长期演进(LTE)系统中的高度移动用户提出了一种迭代信道估计和载波间干扰(ICI)消除方法。所提出的方案通过使用导频符号,数据符号的估计以及接收机处的多普勒扩展信息来估计无线信道。无线信道由加权时域信道插值表示,其中插值权重是根据多普勒扩展和时域信道相关性设计的。通过采用最小二乘(LS)方法获得信道估计。简化的并行干扰消除(PIC)方案与决策统计组合(DSC)结合使用可消除ICI并改善数据符号检测。然后利用这些数据符号来进一步迭代地改进信道估计。仿真结果表明,与用户处于静态和理想信道状态信息时的系统性能相比,该算法在高移动性环境下(例如标准化多普勒扩展为0.1)的迭代信道估计和ICI抵消方案的性能下降。 (CSI)在接收器上可用,很小。

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