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首页> 外文期刊>IEEE Transactions on Communications >Fourth-Order Statistics for Blind Classification of Spatial Multiplexing and Alamouti Space-Time Block Code Signals
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Fourth-Order Statistics for Blind Classification of Spatial Multiplexing and Alamouti Space-Time Block Code Signals

机译:空间复用和Alamouti时空分组码信号盲分类的四阶统计

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Blind signal classification, a major task of intelligent receivers, has important civilian and military applications. This problem becomes more challenging in multi-antenna scenarios due to the diverse transmission schemes that can be employed, e.g., spatial multiplexing (SM) and space-time block codes (STBCs). This paper presents a class of novel algorithms for blind classification of SM and Alamouti STBC (AL-STBC) transmissions. Unlike the prior art, we show that signal classification can be performed using a single receive antenna by taking advantage of the space-time redundancy. The first proposed algorithm relies on the fourth-order moment as a discriminating feature and employs the likelihood ratio test for achieving maximum average probability of correct classification. This requires knowledge of the channel coefficients, modulation type, and noise power. To avoid this drawback, three algorithms have been further developed. Their common idea is that the discrete Fourier transform of the fourth-order lag product exhibits peaks at certain frequencies for the AL-STBC signals, but not for the SM signals, and thus, provides the basis of a useful discriminating feature for signal classification. The effectiveness of these algorithms has been demonstrated in extensive simulation experiments, where a Nakagami-m fading channel and the presence of timing and frequency offsets are assumed.
机译:盲信号分类是智能接收器的一项主要任务,在民用和军事领域都有重要的应用。由于可以采用多种传输方案,例如空间复用(SM)和空时分组码(STBC),因此在多天线场景中该问题变得更具挑战性。本文提出了一种用于SM和Alamouti STBC(AL-STBC)传输盲分类的新颖算法。与现有技术不同,我们表明可以利用空时冗余利用单个接收天线执行信号分类。首先提出的算法依赖于四阶矩作为判别特征,并采用似然比检验来实现正确分类的最大平均概率。这需要了解信道系数,调制类型和噪声功率。为了避免该缺点,已经进一步开发了三种算法。他们的共同思想是,对于AL-STBC信号,四阶滞后积的离散傅立叶变换在某些频率处显示峰值,但对于SM信号则不显示,因此为信号分类提供了有用的区分特征的基础。这些算法的有效性已在大量的模拟实验中得到了证明,其中假设有Nakagami-m衰落信道以及存在定时和频率偏移。

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