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A BCJR-based turbo equalizer for multicarrier time-varying fading channels

机译:用于多载波时变衰落信道的基于BCJR的Turbo均衡器

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A cyclic prefix orthogonal frequency division multiplexing (CP-OFDM) system that transmits information over a time-varying fading channel is considered. In channels with large Doppler spreads, the frequency orthogonality assumption of OFDM is not valid. Hence, inter-carrier interference (ICI) is introduced, which leads to higher bit error rates (BERs). We propose a channel equalizer based on the BCJR algorithm (BCJRE) for mitigating ICI. Its performance is contrasted against a previously proposed approximate iterative maximum likelihood equalizer (IMLE) under a range of channel and system parameters. Our simulation results show that the BCJRE consistently outperforms the IMLE. For slow-varying channels with perfect channel state information at the receiver (CSIR), the gain is about 0.25 dB, while for fast-varying channels, it is 6 dB, revealing that the BCJRE is much more robust in high-ICI scenarios due to Doppler diversity. By using turbo iterations, equalizer performance can be further improved between 0.5 and 2 dB. We also evaluate the performance of the BCJR and the IMLE with noisy channel estimates at the receiver, and show that the BCJRE is more robust to channel estimation noise.
机译:考虑了通过时变衰落信道发送信息的循环前缀正交频分复用(CP-OFDM)系统。在具有多普勒扩展的信道中,OFDM的频率正交性假设无效。因此,引入了载波间干扰(ICI),这导致更高的误码率(BER)。我们提出了一种基于BCJR算法(BCJRE)的信道均衡器,以减轻ICI。在一系列信道和系统参数下,其性能与先前提出的近似迭代最大似然均衡器(IMLE)形成对比。我们的仿真结果表明,BCJRE始终优于IMLE。对于在接收器(CSIR)上具有完善的通道状态信息的慢速变化信道,增益约为0.25 dB,而对于快速变化信道,增益为6 dB,这表明BCJRE在高ICI情况下更为健壮多普勒分集。通过使用Turbo迭代,均衡器性能可以进一步提高0.5至2 dB。我们还用接收器处的信道估计噪声来评估BCJR和IMLE的性能,并表明BCJRE对信道估计噪声更鲁棒。

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