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Multiuser modulation classification based on cumulants in additive white Gaussian noise channel

机译:加性高斯白噪声信道中基于累积量的多用户调制分类

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摘要

In this study the negative impacts of interference transmitters on automatic modulation classification (AMC) have been discussed. The authors proposed two approaches for AMC in the presence of interference: single user modulation classification (SUMC) and multiuser modulation classification (MUMC). When the received power of one transmitter is larger than the other transmitters, SUMC approach recognises the modulation type of the dominant transmitter and other transmitters are treated as interferences. Alternatively when the received powers of all the transmitters are close to each other the authors propose MUMC method to recognise the modulation type of all of the transmitted signals. The features being used to recognise the modulation types of transmitted signals for the both approaches, SUMC and MUMC are higher order cumulants. The superposition property of cumulants for independent random variables is utilised for SUMC and MUMC. The authors investigated the robustness of their classifier with respect to different powers of the received signals via analytical and simulation results and the authors have shown the analytical results will be confirmed by simulations. Also the authors studied the effects of signal synchronisation error, phase jitter and frequency offset on their proposed methods via simulations in the both condition for MUMC and SUMC.
机译:在这项研究中,已经讨论了干扰发射机对自动调制分类(AMC)的负面影响。作者提出了在存在干扰的情况下用于AMC的两种方法:单用户调制分类(SUMC)和多用户调制分类(MUMC)。当一个发射机的接收功率大于其他发射机的功率时,SUMC方法会识别出主要发射机的调制类型,而其他发射机则被视为干扰。或者,当所有发射机的接收功率彼此接近时,作者提出了MUMC方法来识别所有发射信号的调制类型。用于识别两种方法SUMC和MUMC的发射信号的调制类型的功能是高阶累积量。 SUMC和MUMC利用累积量对独立随机变量的叠加特性。作者通过分析和仿真结果研究了分类器针对接收信号的不同功率的鲁棒性,并表明分析结果将通过仿真得到证实。作者还通过在MUMC和SUMC两种情况下的仿真研究了信号同步误差,相位抖动和频率偏移对其提出的方法的影响。

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  • 来源
    《Signal Processing, IET》 |2012年第9期|p.815-823|共9页
  • 作者

    Zaerin M.; Seyfe B.;

  • 作者单位

    Department of Electrical Engineering, Shahed University, Tehran, Iran;

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  • 正文语种 eng
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