首页> 外文会议>The 14th IEEE 2003 International Symposium on Personal, Indoor and Mobile Radio Communications Proceedings v.3 >Adaptive Blind Channel Identification and Equalization for OFDM-MIMO Wireless Communication Systems
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Adaptive Blind Channel Identification and Equalization for OFDM-MIMO Wireless Communication Systems

机译:OFDM-MIMO无线通信系统的自适应盲信道识别和均衡

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Wireless systems employing multiple-input multiple-output (MIMO) structure at the transmitter and the receiver have recently been shown to have the potential of achieving extraordinary bit rates. Orthogonal frequency division multiplexing (OFDM) significantly reduces receiver complexity in broadband systems. In this paper, we investigate a blind algorithm for channel identification and equalization of OFDM-MIMO systems. We exploit the second-order cyclostationarity inherent in OFDM with cyclic prefix and the characteristics of the phased antenna, construct a practical HIPERLAN/2 standard based MIMO-OFDM simulator with the sufficient considerations of statistical correlations between the multiple antenna channels under wireless wideband multipath fading environment, and formulate a new two-stage adaptive blind algorithm using rank reduced subspace channel matrix approximation and CMA (Constant Modulus Algorithm) criteria. The performance of the new method has been justified theoretically and validated through extensive simulations over various common wireless and mobile communication links.
机译:最近已经证明在发射机和接收机处采用多输入多输出(MIMO)结构的无线系统具有实现非凡比特率的潜力。正交频分复用(OFDM)大大降低了宽带系统中的接收机复杂度。在本文中,我们研究了一种用于OFDM-MIMO系统的信道识别和均衡的盲算法。我们利用具有循环前缀的OFDM固有的二阶循环平稳性和相控天线的特性,构建了一个实用的基于HIPERLAN / 2标准的MIMO-OFDM仿真器,并充分考虑了无线宽带多径衰落下多个天线信道之间的统计相关性环境,并使用秩缩减子空间信道矩阵逼近和CMA(恒定模量算法)标准制定了一种新的两阶段自适应盲算法。从理论上证明了该新方法的性能,并通过在各种常见的无线和移动通信链路上进行了广泛的仿真验证了该方法的有效性。

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