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A joint adaptive channel estimator and equalizer for multicarrier systems in time-variant multipath channels

机译:时间变量多径通道中多载波系统的联合自适应信道估计器和均衡器

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In this paper, a new approach is proposed to improve the channel estimation accuracy with channel tracking capability for adaptive multicarrier equalization systems under time-variant multipath fading channel. The improvement is carried out based on the assumption that the channel is static over a transmitted block period, and slowly linearly changing over several block periods. By applying IFFT to the concatenated channel transfer funcrion derived from different blocks, the noise-averaging improvement is achieved, and a better estimation of the channel coefficients with some delay can be obtained. A multi-step channel predictor and a smoothing filter is utilized to compensate for the delay and make the system more robust in terms of channel tracking performance. Adaptive time domain equalization is jointly performed with this approach to avoid the channel invertibility problem found in the frequency domain approach. The effectiveness of the proposed approach is evaluated through simulation for multicarrier systems in time-variant multipath fading channels.
机译:在本文中,一种新的方法,提出了以提高下时变多径衰落信道具有用于多载波自适应均衡系统信道跟踪能力的信道估计精度。该改进是基于这样的假设信道是静态在发送块周期,慢慢地线性变化在几个块周期中进行。通过应用IFFT,以从不同的块导出的级联信道传输funcrion,噪声平均化的改善得以实现,并且可以得到具有一定延迟的信道系数的更好的估计。多步信道预测器和一个平滑滤波器用于补偿该延迟,使系统中的信道跟踪性能方面更加健壮。自适应时域均衡共同使用这种方法进行,以避免在频域方法中发现的信道可逆性问题。所提出的方法的有效性是通过模拟在时变多径的多载波系统衰落信道评估。

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