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Exploiting Secure and Energy-Efficient Collaborative Spectrum Sensing for Cognitive Radio Sensor Networks

机译:为认知无线电传感器网络开发安全且节能的协作频谱传感

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Cognitive radio sensor network (CRSN) has emerged as a promising solution to address the spectrum scarcity problem in traditional sensor networks, by enabling sensor nodes to opportunistically access licensed spectrum. To protect the transmission of primary users and enhance spectrum utilization, collaborative spectrum sensing is generally adopted for improving spectrum sensing accuracy. However, as sensor nodes may be compromised by adversaries, these nodes can send false sensing reports to mislead the spectrum sensing decision, making CRSNs vulnerable to spectrum sensing data falsification (SSDF) attacks. Meanwhile, since the energy consumption of spectrum sensing is considerable for energy-limited sensor nodes, SSDF attack countermeasures should be carefully devised with the consideration of energy efficiency. To this end, we propose a secure and energy-efficient collaborative spectrum sensing scheme to resist SSDF attacks and enhance the energy efficiency in CRSNs. Specifically, we theoretically analyze the impacts of two types of attacks, i.e., independent and collaborative SSDF attacks, on the accuracy of collaborative spectrum sensing in a probabilistic way. To maximize the energy efficiency of spectrum sensing, we calculate the minimum number of sensor nodes needed for spectrum sensing to guarantee the desired accuracy of sensing results. Moreover, a trust evaluation scheme, named FastDtec, is developed to evaluate the spectrum sensing behaviors and fast identify compromised nodes. Finally, a secure and energy-efficient collaborative spectrum sensing scheme is proposed to further improve the energy efficiency of collaborative spectrum sensing, by adaptively isolating the identified compromised nodes from spectrum sensing. Extensive simulation results demonstrate that our proposed scheme can resist SSDF attacks and significantly improve the energy efficiency of collaborative spectrum sensing.
机译:认知无线电传感器网络(CRSN)通过使传感器节点能够机会性地访问许可频谱来解决传统传感器网络中的频谱稀缺问题,已成为一种有前途的解决方案。为了保护主要用户的传输并提高频谱利用率,通常采用协作频谱感知来提高频谱感知的准确性。但是,由于传感器节点可能受到对手的侵害,这些节点可能发送错误的感知报告来误导频谱感知决策,从而使CRSN容易受到频谱感知数据篡改(SSDF)攻击的影响。同时,由于频谱感知的能量消耗对于能量受限的传感器节点而言是相当大的,因此应在考虑能量效率的情况下精心设计SSDF攻击对策。为此,我们提出了一种安全高效的协作频谱感知方案,以抵抗SSDF攻击并提高CRSN中的能效。具体而言,我们从理论上以概率方式分析了两种类型的攻击(即独立和协作SSDF攻击)对协作频谱感知的准确性的影响。为了最大程度地提高频谱感应的能效,我们计算频谱感应所需的最少传感器节点数,以确保达到所需的感应结果精度。此外,还开发了一种名为FastDtec的信任评估方案,以评估频谱感知行为并快速识别受感染的节点。最后,提出了一种安全高效的协作频谱感知方案,通过自适应地将识别出的受损节点与频谱感知隔离,进一步提高了协作频谱感知的能效。大量的仿真结果表明,我们提出的方案可以抵抗SSDF攻击并显着提高协作频谱感知的能效。

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