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Error Detection of Malicious User Attack in Cognitive Radio Networks

机译:认知无线电网络中恶意用户攻击的错误检测

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Malicious user is internal attacker that disturb communication. In case of cognitive radio, malicious user attacks primary signal detection and influences the fidelity of sensing outcome. This paper studies malicious user attack and its impacts to sensing outcome in cognitive radio network (CRN). We consider a number of malicious user that emulate primary user (PU) signal. Malicious users are randomly deployed around secondary user (SU) at a certain distance. The distance between PU transmitter and SU is 100 km. We define different number of malicious user and observe the impact to detection error rate. The change of transmission power of malicious user is also studied. These two cases is investigated under two hypothesis of Neyman Pearson criterion. The derived results show that increasing number of malicious user can increase probability of error rate. Furthermore, increasing power transmission of malicious user can increase probability of error rate as well.
机译:恶意用户是扰乱通信的内部攻击者。在认知无线电的情况下,恶意用户攻击主要信号检测并影响感测结果的保真度。本文研究了恶意的用户攻击及其对认知无线电网络(CRN)中的传感结果的影响。我们考虑一些模拟主用户(PU)信号的恶意用户。恶意用户随机部署在一定距离附近辅助用户(su)。 PU变送器和SU之间的距离为100公里。我们定义了不同数量的恶意用户,并观察对检测错误率的影响。还研究了恶意用户的传输力的变化。这两种案例在奈曼皮尔森标准的两个假设下进行了调查。衍生结果表明,越来越多的恶意用户可以提高错误率的概率。此外,增加恶意用户的动力传递也可以提高错误率的概率。

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