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Secure Cooperative Spectrum Sensing for the Cognitive Radio Network Using Nonuniform Reliability

机译:使用非均匀可靠性的认知无线电网络安全合作频谱感知

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摘要

Both reliable detection of the primary signal in a noisy and fading environment and nullifying the effect of unauthorized users are important tasks in cognitive radio networks. To address these issues, we consider a cooperative spectrum sensing approach where each user is assigned nonuniform reliability based on the sensing performance. Users with poor channel or faulty sensor are assigned low reliability. The nonuniform reliabilities serve as identification tags and are used to isolate users with malicious behavior. We consider a link layer attack similar to the Byzantine attack, which falsifies the spectrum sensing data. Three different strategies are presented in this paper to ignore unreliable and malicious users in the network. Considering only reliable users for global decision improves sensing time and decreases collisions in the control channel. The fusion center uses the degree of reliability as a weighting factor to determine the global decision in scheme I. Schemes II and III consider the unreliability of users, which makes the computations even simpler. The proposed schemes reduce the number of sensing reports and increase the inference accuracy. The advantages of our proposed schemes over conventional cooperative spectrum sensing and the Chair-Varshney optimum rule are demonstrated through simulations.
机译:在嘈杂和衰落的环境中可靠检测主信号并消除未授权用户的影响,这都是认知无线电网络的重要任务。为了解决这些问题,我们考虑了一种协作频谱感测方法,其中根据感测性能为每个用户分配了不一致的可靠性。通道不良或传感器故障的用户被分配为低可靠性。不一致的可靠性用作识别标签,并用于隔离具有恶意行为的用户。我们认为类似于拜占庭式攻击的链路层攻击会伪造频谱感知数据。本文提出了三种不同的策略来忽略网络中不可靠和恶意的用户。仅考虑可靠用户的全局决策可改善检测时间并减少控制通道中的冲突。融合中心使用可靠性的程度作为加权因子来确定方案I中的全局决策。方案II和III考虑了用户的不可靠性,这使得计算更加简单。提出的方案减少了感知报告的数量并提高了推理的准确性。通过仿真证明了我们提出的方案优于常规协作频谱感知和Chair-Varshney最佳规则的优势。

著录项

  • 期刊名称 other
  • 作者

    Muhammad Usman; Insoo Koo;

  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 101809
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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