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Optimized Non-Cooperative Spectrum Sensing Algorithm in Cognitive Wireless Sensor Networks

机译:认知无线传感器网络中的优化非合作频谱感知算法

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摘要

The cognitive wireless sensor network (CWSN) is an important development direction of wireless sensor networks (WSNs), and spectrum sensing technology is an essential prerequisite for CWSN to achieve spectrum sharing. However, the existing non-cooperative narrowband spectrum sensing technology has difficulty meeting the application requirements of CWSN at present. In this paper, we present a non-cooperative spectrum sensing algorithm for CWSN, which combines the multi-resolution technique, phase space reconstruction method, and singular spectrum entropy method to sense the spectrum of narrowband wireless signals. Simulation results validate that this algorithm can greatly improve the detection probability at a low signal-to-noise ratio (SNR) (from −19dB to −12dB), and the detector can quickly achieve the best detection performance as the SNR increases. This algorithm could promote the development of CWSN and the application of WSNs.
机译:认知无线传感器网络(CWSN)是无线传感器网络(WSN)的重要发展方向,频谱感知技术是CWSN实现频谱共享的必要前提。但是,现有的非合作窄带频谱感知技术目前难以满足CWSN的应用需求。在本文中,我们提出了一种用于CWSN的非合作频谱感知算法,该算法结合了多分辨率技术,相空间重构方法和奇异频谱熵方法来感知窄带无线信号的频谱。仿真结果证明,该算法可以在低信噪比(SNR)(从-19dB到-12dB)的情况下极大地提高检测概率,并且随着SNR的提高,检测器可以快速获得最佳检测性能。该算法可以促进CWSN的发展和WSN的应用。

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