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An RLS channel tracking algorithm with an ordered selection technique for MIMO-OFDM systems in time-selective fading channels

机译:时间选择性衰落信道中具有MIMO-OFDM系统的有序选择技术的RLS信道跟踪算法

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In this paper, we propose an ordered selection technique to improve the performance of the decision-directed RLS adaptive channel tracking algorithm in 2×2 spatial-multiplexing MIMO-OFDM systems under high mobility. The proposed technique uses the decision of high reliability order during MIMO signal detection and then selectively activates the RLS adaptation only when less interference and error will be generated if a wrong decision is still made. Simulation results show that the channel tracking accuracy of the proposed approach outperforms the 2D-RLS algorithm and the conventional linear interpolation algorithm. Moreover, we also show that both ordering and selection are effective and necessary to greatly suppress the error propagation and coefficient misadjustment. With the proposed technique, the system performance has obvious SNR improvements.
机译:在本文中,我们提出了一种有序选择技术,以提高在高移动性下2×2空间复用MIMO-OFDM系统中决策导向的RLS自适应信道跟踪算法的性能。所提出的技术在MIMO信号检测期间使用高可靠性顺序的决策,然后仅在仍然做出错误决策的情况下,仅在产生较少干扰和错误时才选择性激活RLS自适应。仿真结果表明,该方法的信道跟踪精度优于2D-RLS算法和传统的线性插值算法。此外,我们还表明,排序和选择对于有效地抑制误差传播和系数失调都是有效且必要的。利用所提出的技术,系统性能具有明显的SNR改善。

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