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A Sequential Compressed Spectrum Sensing Algorithm against SSDH Attack in Cognitive Radio Networks

机译:一种针对认知无线电网络SSDH攻击的顺序压缩频谱传感算法

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摘要

Spectrum sensing is one of the key technologies in wireless wideband communication. There are still challenges in respect of how to realize fast and robust wideband spectrum sensing technology. In this paper, a novel nonreconstructed sequential compressed wideband spectrum sensing algorithm (NSCWSS) is proposed. Firstly, the algorithm uses a sequential spectrum sensing method based on history memory and reputation to ensure the robustness of the algorithm. Secondly, the algorithm uses the strategy of compressed sensing without reconstruction, which thus ensures the sensing agility of the algorithm. The algorithm is simulated and analyzed by using the centralized cooperative sensing. The theoretical analysis and simulation results reveal that, under the condition of ensuring the certain detection probability, the proposed algorithm effectively reduces complex computation of signal reconstruction, significantly reducing the wideband spectrum sampling rate. At the same time, in the cognitive wideband communication scenarios, the algorithm also achieves a better defense against the SSDF attack in spectrum sensing.
机译:光谱感测是无线宽带通信中的关键技术之一。关于如何实现快速和强大的宽带频谱传感技术存在仍存在挑战。在本文中,提出了一种新颖的非批判性顺序压缩宽带频谱传感扫描算法(NSCWSS)。首先,该算法基于历史记忆和声誉使用顺序频谱感测方法,以确保算法的鲁棒性。其次,该算法使用压缩感测的策略而无需重建,从而确保了算法的感测敏捷性。通过使用集中式协作感测来模拟和分析该算法。理论分析和仿真结果表明,在确保某些检测概率的条件下,所提出的算法有效地降低了信号重建的复杂计算,显着降低了宽带频谱采样率。同时,在认知宽带通信场景中,该算法还实现了对SSDF攻击在频谱感测中的更好的防御。

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