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Blind and semi-blind ML detection for space-time block-coded OFDM wireless systems

机译:时空块编码OFDM无线系统的盲和半盲ML检测

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This paper investigates the joint maximum likelihood (ML) data detection and channel estimation problem for Alamouti space-time block-coded (STBC) orthogonal frequency-division multiplexing (OFDM) wireless systems. The joint ML estimation and data detection is generally considered a hard combinatorial optimization problem. We propose an efficient low-complexity algorithm based on branch-estimate-bound strategy that renders exact joint ML solution. However, the computational complexity of blind algorithm becomes critical at low signal-to-noise ratio (SNR) as the number of OFDM carriers and constellation size are increased especially in multiple-antenna systems. To overcome this problem, a semi-blind algorithm based on a new framework for reducing the complexity is proposed by relying on subcarrier reordering and decoding the carriers with different levels of confidence using a suitable reliability criterion. In addition, it is shown that by utilizing the inherent structure of Alamouti coding, the estimation performance improvement or the complexity reduction can be achieved. The proposed algorithms can reliably track the wireless Rayleigh fading channel without requiring any channel statistics. Simulation results presented against the perfect coherent detection demonstrate the effectiveness of blind and semi-blind algorithms over frequency-selective channels with different fading characteristics.
机译:本文研究了Alamouti空时分组编码(STBC)正交频分复用(OFDM)无线系统的联合最大似然(ML)数据检测和信道估计问题。联合ML估计和数据检测通常被认为是一个困难的组合优化问题。我们提出了一种基于分支估计约束策略的高效低复杂度算法,该算法可提供精确的联合ML解决方案。但是,盲信号算法的计算复杂度在低信噪比(SNR)时变得至关重要,这是因为OFDM载波的数量和星座图大小的增加,尤其是在多天线系统中。为了克服这个问题,提出了一种基于新框架的用于降低复杂度的半盲算法,该算法依靠子载波重排序并使用合适的可靠性标准对具有不同置信度的载波进行解码。另外,示出了通过利用Alamouti编码的固有结构,可以实现估计性能的提高或复杂度的降低。所提出的算法可以可靠地跟踪无线瑞利衰落信道,而无需任何信道统计信息。针对完美相干检测提出的仿真结果证明了在具有不同衰落特性的频率选择信道上盲和半盲算法的有效性。

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