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Spectral Correlation of Multicarrier Modulated Signals and Its Application for Signal Detection

机译:多载波调制信号的频谱相关性及其在信号检测中的应用

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Spectral correlation theory for cyclostationary time-series signals has been studied for decades. Explicit formulas of spectral correlation function for various types of analog-modulated and digital-modulated signals are already derived. In this paper, we investigate and exploit the cyclostationarity characteristics for two kinds of multicarrier modulated (MCM) signals: conventional OFDM and filter bank based multicarrier (FBMC) signals. The spectral correlation characterization of MCM signal can be described by a special linear periodic time-variant (LPTV) system. Using this LPTV description, we have derived the explicit theoretical formulas of nonconjugate and conjugate cyclic autocorrelation function (CAF) and spectral correlation function (SCF) for OFDM and FBMC signals. According to theoretical spectral analysis, Cyclostationary Signatures (CS) are artificially embedded into MCM signal and a low-complexity signature detector is, therefore, presented for detecting MCM signal. Theoretical analysis and simulation results demonstrate the efficiency and robustness of this CS detector compared to traditionary energy detector.
机译:循环平稳时间序列信号的频谱相关理论已经研究了数十年。已经推导出了各种类型的模拟调制和数字调制信号的频谱相关函数的明确公式。在本文中,我们研究和开发了两种多载波调制(MCM)信号的循环平稳特性:常规OFDM和基于滤波器组的多载波(FBMC)信号。 MCM信号的频谱相关性表征可以通过特殊的线性周期性时变(LPTV)系统来描述。使用此LPTV描述,我们得出了OFDM和FBMC信号的非共轭和共轭循环自相关函数(CAF)和频谱相关函数(SCF)的明确理论公式。根据理论频谱分析,将循环平稳签名(CS)人工嵌入到MCM信号中,因此提出了一种用于检测MCM信号的低复杂度签名检测器。理论分析和仿真结果表明,与传统的能量探测器相比,该CS探测器具有更高的效率和鲁棒性。

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