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A Signal Marker Method Based On Double Threshold Energy Detection

机译:基于双阈值能量检测的信号标记方法

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Cognitive radio energy detection algorithm is widely used in practical engineering, but its main shortcoming is that the judgment threshold is difficult, and it is difficult to set the threshold while taking into account both false alarm probability and leakage alarm probability, thus increasing the difficulty of signal marking in the spectrum. Therefore, on the basis of the traditional double-threshold energy detection, a signal marking method is proposed for the characteristic of the fluctuation of the average power of noise. The maximum holding method is used to further process the spectrum and mark the central frequency point. Then, on the basis of the double-threshold energy detection, the frequency points between the double-threshold are sampled and modeled, and the end points of the frequency band are marked, so as to achieve the purpose of signal marking.
机译:认知无线电能量检测算法在实际工程中被广泛使用,但是其主要缺点是判断阈值比较困难,同时兼顾虚警概率和泄漏预警概率难以设定阈值,从而增加了难度。频谱中的信号标记。因此,在传统的双阈值能量检测的基础上,针对噪声平均功率的波动特点,提出了一种信号标记方法。最大保持方法用于进一步处理频谱并标记中心频率点。然后,在双阈值能量检测的基础上,对双阈值之间的频率点进行采样建模,并对频带的端点进行标记,以达到信号标记的目的。

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