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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Spectrum Sensing Algorithm Based on Double Threshold and Two-Stage Detection Under a Low SNR
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Spectrum Sensing Algorithm Based on Double Threshold and Two-Stage Detection Under a Low SNR

机译:低SNR下基于双阈值和两级检测的频谱感测算法

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摘要

In cognitive radio networks, spectrum sensing algorithms almost perform poor in low signal-to-noise ratio (SNR) sensing environment, it does need to improve detection probability by increasing the detection time. In order to solve the mentioned problems, a new spectrum sensing algorithm based on the double threshold and two-stage detection strategy under the condition of low SNR is put forward in this paper. First of all, when a false-alarm probability is given, the sampling length is found out under the different SNR level. Then the first stage detection is carried out by designing the two detection threshold. Finally the second stage detection is implemented for the center portion of the double threshold and the final detection result is gotten. Simulations and analysis show that, when the SNR is low, the proposed algorithm not only has a short average sensing time but also has a good performance in a small false-alarm probability constraint condition and low algorithm complexity.
机译:在认知无线电网络中,光谱感测算法几乎在低信噪比(SNR)感测环境中执行差,它需要通过增加检测时间来提高检测概率。 为了解决上述问题,本文提出了一种基于低SNR条件下的双阈值和两级检测策略的新频谱传感算法。 首先,当给出假警报概率时,在不同的SNR水平下发现采样长度。 然后通过设计两个检测阈值来执行第一阶段检测。 最后,为双阈值的中心部分实现了第二阶段检测,并且获得了最终的检测结果。 仿真和分析表明,当SNR低时,所提出的算法不仅具有短的平均传感时间,而且在小的假警报概率约束条件和低算法复杂性中也具有良好的性能。

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