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Novel two-stage spectrum sensing for energy detection with FFT

机译:新型两阶段光谱感测能能量检测与FFT

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A cognitive radio system coexisting with various systems must perform a spectrum sensing for finding a white space (WS). In this paper, we propose a new two-stage spectrum sensing method using an energy detection (ED) based on fast Fourier transform (FFT). In the case that an unknown signal is present the FFT band, false signals are detected in the surrounding FFT bins of the received signal due to a spectral leakage. Whereas a windowed FFT is well known as the solution of the spectral leakage, the spectrum spread to out of the original signal frequency is detected. The shape of the spectrum depends on the kinds of the window function. Therefore we improve the detection performance of ED by employing the property of the windowing in the second stage of the proposed spectrum sensing method. The cognitive node can obtain the chance of the wireless communication because WS can be detected with low false alarm probability by the proposed method.
机译:与各种系统共存的认知无线电系统必须执行用于找到空白空间(WS)的频谱感测。在本文中,我们提出了一种基于快速傅里叶变换(FFT)的能量检测(ED)的新的两阶段光谱传感方法。在未知信号存在FFT带的情况下,由于光谱泄漏,在接收信号的周围FFT频带中检测错误信号。虽然窗口的FFT是众所周知的频谱泄漏的解决方案,但是检测到扩展到原始信号频率的频谱。频谱的形状取决于窗口功能的种类。因此,我们通过采用所提出的光谱传感方法的第二阶段的窗口的性质来改善ED的检测性能。认知节点可以获得无线通信的可能性,因为通过所提出的方法可以用低误报概率检测WS。

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