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Semiblind joint channel estimation and equalization for OFDM systems in rapidly varying channels

机译:迅速变化通道中OFDM系统的半卷发联合通道估计和均衡

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We describe a new joint iterative channel estimation and equalization algorithm for joint channel estimation and data detection for orthogonal frequency division multiplexing (OFDM) systems in the presence of frequency selective and rapidly time-varying channels. The algorithm is based on the expectation maximization-maximum a posteriori (EM-MAP) technique which is very suitable for the multicarrier signal formats. The algorithm leads to a receiver structure that yields the equalized output, using the channel estimates. The pilot symbols are employed to estimate the initial channel coefficients effectively and unknown data symbols are averaged out in the algorithm. The band-limited, discrete cosine serial expansion of low dimensionality is employed to represent the time-varying fading channel. In this way, the resulting reduced dimensional channel coefficients are estimated iteratively with tractable complexity. The extensive computer simulations show that the algorithm has excellent symbol error rate (SER) and mean square error (MSE) performances for very high mobility even during the initialization step.
机译:在存在频率选择性和快速时变通道的存在中,我们描述了一种新的关节迭代信道估计和用于正交频分复用(OFDM)系统的联合信道估计和数据检测的均衡算法。该算法基于期望最大化最大值的后验(EM-MAP)技术,其非常适合于多载波信号格式。算法导致使用信道估计来产生均衡输出的接收器结构。使用导频符号来有效地估计初始信道系数,并且在算法中将未知的数据符号平均出来。使用带限量的低维度的离散余弦连续膨胀来表示时变衰落通道。以这种方式,迭代地估计产生的减小的尺寸沟道系数,其具有易扰动的复杂性。广泛的计算机模拟表明,即使在初始化步骤期间,该算法也具有出色的符号错误率(SER)和均方误差(MSE)性能,用于非常高的移动性。

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