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AdS: An adaptive spectrum sensing technique for survivability under jamming attack in Cognitive Radio Networks

机译:广告:一种自适应频谱传感技术,用于在认知无线电网络中干扰攻击下的存活性

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IEEE 802.22 Cognitive Radio Network (CRN) allows sharing of geographically unused spectrum allocated to the television broadcast service, on a non-interfering basis. CRNs make use of Dynamic Spectrum Access (DSA) which is a two-stage mechanism comprising fast sensing, which is mandatory and fine sensing which is optional. However, the two-stage spectrum sensing mechanism suits malicious nodes in the CRN which intend to deny the use of vacant spectrum to the CRN by jamming its communication while at the same time, minimizing the amount of power expended on jamming. Such Minimal Denial of Service (MDoS) jamming attack can be launched by the malicious nodes by transmitting a very short jamming signal during the mandatory fast sensing stage which will in turn force the CRN to carry out the otherwise optional, fine sensing. MDoS jamming attack results in wastage of spectrum opportunities for the rest of the CRN to the extent which can jeopardize its survivability. In this paper we present AdS: an Intelligent Adaptive spectrum Sensing technique which, not only minimizes the effects of MDoS jamming attack but can also reduce the effects of noise during the spectrum sensing stages of DSA. The adaptive nature of AdS improves spectrum utilization by CRNs by up to 90% through adaptive tuning of the fine sensing threshold which is based on an estimate of PU's activity and the severity of MDoS jamming attack.
机译:IEEE 802.22认知无线电网络(CRN)允许在非干扰基础上分配给电视广播服务的地理上未使用的光谱。 CRN利用动态频谱接入(DSA),这是一种两级机构,包括快速感测,这是强制性的和精细感测,是可选的。然而,两级光谱传感机制在CRN中适用于CRN中的恶意节点,其旨在通过在同一时间堵塞其通信来拒绝使用空置频谱对CRN的使用,尽量减少消耗在干扰上的功率量。这种最小拒绝服务(MDOS)干扰攻击可以通过恶作剧节点通过在强制快速感测阶段发送非常短的干扰信号,这反过来迫使CRN执行另外的可选精细感测。 MDOS干扰攻击导致频谱机会的浪费,以危及其生存能力的程度。在本文中,我们呈现ADS:一种智能自适应频谱感测技术,不仅可以最大限度地减少MDOS干扰攻击的影响,而且还可以降低DSA的频谱感测阶段期间噪声的影响。 ADS的自适应性质通过基于PU的活动的估计和MDOS干扰攻击的严重程度,通过自适应调整来改善CRNS通过CRNS的频谱利用率高达90%。

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