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Optimal training sequence design for MIMO-OFDM in spatially correlated fading environments

机译:空间相关衰落环境下MIMO-OFDM的最优训练序列设计

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摘要

Multiple Input Multiple Output with Orthogonal Frequency Division Multiplexing (MIMOOFDM) has been widely adopted as one of the most promising air interface solutions for future broadband wireless communication systems due to its high rate transmission capability and robustness against multipath fading. However, these MIMO-OFDM advantages cannot be achieved unless the channel state information (CSI) can be obtained accurately and promptly at the receiver to assist coherent detection of data symbols. Channel estimation and training sequence design are, therefore, still open challenges of great interest.In this work, we investigate the Linear Minimum Mean Square Error (LMMSE) channelestimation and design nearly optimal training sequences for MIMO-OFDM systemsin spatially correlated fading. We, first, review the LMMSE channel estimation model forMIMO-OFDM in spatially correlated fading channels. We, then, derive a tight theoreticallower bound of the channel estimation Mean Square Error (MSE). By exploiting the information on channel correlation matrices which is available at the transmitter, we design a practical and nearly optimal training sequence for MIMO-OFDM systems . The optimal transmit power allocation for training sequences is found using the Iterative Bisection Procedure (IBP). We also propose an approximate transmit power allocation algorithm which is computationally more efficient than the IBP while maintaining a similar MSE performance. The proposed training sequence design method is also applied to MIMO-OFDM systems where Cyclic Prefixing OFDM (CP-OFDM) is replaced by Zero Padding OFDM - OverLap-Add method (ZP-OFDM-OLA). The simulation results show that the performance of the proposed training sequence is superior to that of all existing training sequences and almost achieves the MSE theoretical lower bound.
机译:正交频分复用(MIMOOFDM)的多输入多输出由于其高速率传输能力和对多径衰落的鲁棒性,已被广泛用作未来宽带无线通信系统中最有希望的空中接口解决方案之一。然而,除非能够在接收器处准确且迅速地获得信道状态信息(CSI)以辅助数据符号的相干检测,否则无法获得这些MIMO-OFDM优势。因此,信道估计和训练序列设计仍然是人们非常关注的挑战。在这项工作中,我们研究了线性最小均方误差(LMMSE)信道估计,并为空间相关衰落下的MIMO-OFDM系统设计了近乎最佳的训练序列。首先,我们回顾一下空间相关衰落信道中用于MIMO-OFDM的LMMSE信道估计模型。然后,我们得出信道估计均方误差(MSE)的严格理论下限。通过利用发射机处可用的信道相关矩阵信息,我们为MIMO-OFDM系统设计了一种实用且接近最佳的训练序列。使用迭代对分过程(IBP)找到训练序列的最佳发射功率分配。我们还提出了一种近似的发射功率分配算法,该算法在计算上比IBP更有效,同时保持了类似的MSE性能。所提出的训练序列设计方法也适用于MIMO-OFDM系统,其中循环前缀OFDM(CP-OFDM)被零填充OFDM-重叠叠加法(ZP-OFDM-OLA)取代。仿真结果表明,所提出的训练序列的性能优于所有现有训练序列,并且几乎达到了MSE的理论下限。

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