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Cyclostationarity-Based Spectrum Sensing for Analog TV and Wireless Microphone Signals

机译:基于Cyclostationarity的模拟电视和无线麦克风信号的频谱感测

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Spectrum sensing is a vital signal processing task in the cognitive radio systems in order to detect and identify the primary users signals (the licensees). In this paper, we study the performance of cyclostationary features detector as a spectrum sensing technique for IEEE 802.22 Wireless Regional Area Network (WRAN). We propose two algorithms based on cyclostationary features to detect the presence of TV-PAL and wireless microphone signals. These algorithms are evaluated in comparison with energy detector. The results show that the performance of cyclostationarity-based algorithms is superior to energy detector performance especially in the case of noise uncertainty.
机译:频谱感测是认知无线电系统中的重要信号处理任务,以便检测和识别主要用户信号(许可人)。在本文中,我们研究了睫状体特征检测器的性能作为IEEE 802.22无线区域网络(WRAN)的频谱传感技术。我们提出了两个基于裂纹功能的算法,以检测电视PAL和无线麦克风信号的存在。与能量检测器相比,评估这些算法。结果表明,基于睫状症的算法的性能优于能量检测器性能,特别是在噪声不确定性的情况下。

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