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首页> 外文期刊>Wireless Communications, IEEE Transactions on >On the Cyclostationarity of OFDM and Single Carrier Linearly Digitally Modulated Signals in Time Dispersive Channels: Theoretical Developments and Application
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On the Cyclostationarity of OFDM and Single Carrier Linearly Digitally Modulated Signals in Time Dispersive Channels: Theoretical Developments and Application

机译:色散信道中OFDM和单载波线性数字调制信号的循环平稳性:理论发展与应用

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摘要

Previous studies on the cyclostationarity aspect of orthogonal frequency division multiplexing (OFDM) and single carrier linearly digitally modulated (SCLD) signals assumed simplified signal and channel models or considered only second-order cyclostationarity. This paper presents new results concerning the cyclostationarity of these signals under more general conditions, including time dispersive channels, additive Gaussian noise, and carrier phase, frequency, and timing offsets. Analytical closed-form expressions are derived for time- and frequency-domain parameters of the cyclostationarity of OFDM and SCLD signals. In addition, a condition to eliminate aliasing in the cycle and spectral frequency domains is derived. Based on these results, an algorithm is developed for recognizing OFDM versus SCLD signals. This algorithm obviates the need for commonly required signal preprocessing tasks, such as signal and noise power estimation and the recovery of symbol timing and carrier information.
机译:先前对正交频分复用(OFDM)和单载波线性数字调制(SCLD)信号的循环平稳性方面的研究假设采用简化的信号和信道模型,或者仅考虑了二阶循环平稳性。本文提出了有关这些信号在更一般条件下的循环平稳性的新结果,这些条件包括时间色散通道,加性高斯噪声以及载波相位,频率和定时偏移。针对OFDM和SCLD信号的循环平稳性的时域和频域参数,导出了解析形式。另外,得出消除循环和频谱频域中的混叠的条件。基于这些结果,开发了一种用于识别OFDM和SCLD信号的算法。该算法消除了对通常需要的信号预处理任务的需要,例如信号和噪声功率估计以及符号定时和载波信息的恢复。

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