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Multiple-Access Interference and Multipath Influence Mitigation for Multicarrier Code-Division Multiple-Access Signals

机译:多载波代码分割多址信号的多址干扰和多径影响缓解缓解

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摘要

Sidelobe raising, caused by multipath and multiple-access interference (MAI), hinders the signal detection and time-delay estimation of multicarrier code-division multiple-access (MC-CDMA) signals, which are crucial for localization and tracking applications as well as the sampling-instant configuration of demodulators. Therefore, we propose a method based on reiterative minimum mean-square error (RMMSE) filters to mitigate the MAI and multipath influence. The RMMSE filter is modified to adapt to the multicarrier modulation and symbol involvement characteristics of MC-CDMA signals. The superiority of the proposed method in terms of sidelobes suppression, compared with existing matched filter, least square estimator, least mean square, and single-carrier RMMSE methods, is verified through simulations in the presence of MAIs and short-time-delay multipath. The results show the advantages of the proposed method in terms of high temporal resolution and robustness to MAI influence. This study could contribute toward multipath detection and aid multipath mitigation techniques in strong MAI scenarios.
机译:由多径和多址干扰引起的Sidelobe升高,阻碍了多载波码分割多址(MC-CDMA)信号的信号检测和时间延迟估计,这对于本地化和跟踪应用以及解调器的采样 - 即时配置。因此,我们提出了一种基于重复性最低均方误差(RMMSE)滤波器的方法,以减轻MAI和多径影响。修改RMMSE滤波器以适应MC-CDMA信号的多载波调制和符号参与特性。通过在MAI的存在和短时延迟多径存在下,通过模拟验证了与现有匹配过滤器,最小二乘估计器,最小均线和单载波RMMSE方法相比所提出的方法的优越性。结果表明,在对MAI影响的高时分辨率和鲁棒性方面,该方法的优点。该研究可以促进强大的MAI情景中的多径检测和辅助多路径缓解技术。

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