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A new subspace method for blind estimation of selective MIMO-STBC channels

机译:选择性MIMO-STBC信道盲估计的新子空间方法

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摘要

In this paper, a new technique for the blind estimation of frequency and/or time-selective multiple-input multipleoutput (MIMO) channels under space-time block coding (STBC) transmissions is presented. The proposed method relies on a basis expansion model (BEM) of the MIMO channel, which reduces the number of parameters to be estimated, and includes many practical STBC-based transmission scenarios, such as STBC-orthogonal frequency division multiplexing (OFDM), space-frequency block coding (SFBC), time-reversal STBC, and time-varying STBC encoded systems. Inspired by the unconstrained blind maximum likelihood (UML) decoder, the proposed criterion is a subspace method that efficiently exploits all the information provided by the STBC structure, as well as by the reduced-rank representation of the MIMO channel. The method, which is independent of the specific signal constellation, is able to blindly recover the MIMO channel within a small number of available blocks at the receiver side. In fact, for some particular cases of interest such as orthogonal STBC-OFDM schemes, the proposed technique blindly identifies the channel using just one data block. The complexity of the proposed approach reduces to the solution of a generalized eigenvalue (GEV) problem and its computational cost is linear in the number of sub-channels. An identifiability analysis and some numerical examples illustrating the performance of the proposed algorithm are also provided.
机译:在本文中,提出了一种新技术,用于在空时分组编码(STBC)传输下盲估计频率和/或时间选择多输入多输出(MIMO)信道。所提出的方法依赖于MIMO信道的基本扩展模型(BEM),它减少了要估计的参数的数量,并且包括许多基于STBC的实用传输方案,例如STBC正交频分复用(OFDM),空间频率块编码(SFBC),时间反向STBC和时变STBC编码系统。受到无约束盲最大似然(UML)解码器的启发,提出的标准是一种子空间方法,可有效利用STBC结构以及MIMO信道的秩降低表示所提供的所有信息。该方法与特定的信号星座图无关,能够在接收机侧盲目地恢复少量可用块内的MIMO信道。实际上,对于感兴趣的某些特定情况,例如正交STBC-OFDM方案,提出的技术仅使用一个数据块就盲目地识别了信道。所提出的方法的复杂性降低了对广义特征值(GEV)问题的解决,并且其计算成本在子信道数量上是线性的。还提供了可识别性分析和一些数值示例,说明了所提出算法的性能。

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