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首页> 外文期刊>International journal of interdisciplinary telecommunications and networking >Two-Stage Spectrum Sensing for Cognitive Radio Using Eigenvalues Detection
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Two-Stage Spectrum Sensing for Cognitive Radio Using Eigenvalues Detection

机译:使用特征值检测的认知无线电的两阶段光谱感测

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摘要

Spectrum sensing in cognitive radio has difficult and complex requirements, requiring speed and good detection performance at low SNR ratios. As suggested in IEEE 802.22, the primary user signal needs to be detected at SNR = -21dB with a probability of detection exceeds 0.9. Conventional spectrum sensing methods such as the energy detector, which is characterized by simplicity with good detection performance at high SNR values, are ineffective at low SNR values, whereas eigenvalues detection methods have good detection performance at low SNR ratios, but they have high complexity. In this paper, the authors investigate the process of spectrum sensing in two stages: in the first stage (coarse sensing), the energy detector is adopted, while in the second stage (fine sensing), eigenvalues detection methods are used. This method improves performance in terms of probability of detection and computational complexity, as the authors compared the performance of two-stage sensing scheme with ones where only energy detection or eigenvalues detection is performed.
机译:认知无线电中的光谱感测具有困难和复杂的要求,要求在低SNR比下进行速度和良好的检测性能。如IEEE 802.22中所示,需要在SNR = -21db下检测主用户信号,其中检测概率超过0.9。诸如能量检测器的常规光谱感测方法,其特征在于在高SNR值下具有良好的检测性能,在低SNR值下是无效的,而特征值检测方法在低SNR比下具有良好的检测性能,但它们具有很高的复杂性。在本文中,作者研究了两个阶段的光谱感测过程:在第一阶段(粗传感)中,采用能量检测器,而在第二阶段(细小感测),使用特征值检测方法。该方法在检测和计算复杂性的概率方面提高了性能,因为作者将两级感测方案的性能与仅执行能量检测或特征值检测的性能进行了比较。

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