首页> 外文会议>2014 22nd Annual IEEE International Symposium on Modeling, Analysis and Simulation of Computer and Telecommunication Systems >Multi-fusion Based Distributed Spectrum Sensing against Data Falsification Attacks and Byzantine Failures in CR-MANET
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Multi-fusion Based Distributed Spectrum Sensing against Data Falsification Attacks and Byzantine Failures in CR-MANET

机译:基于多融合的分布式频谱感知,应对CR-MANET中的数据篡改攻击和拜占庭式故障

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In mobile ad-hoc cognitive radio networks (CRMANET), accurately identifying primary user spectrum occupancy is an important requirement in successful utilization of the spectrum by the secondary user. This is made difficult by malicious mobile secondary users launching spectrum sensing data falsification (SSDF) attacks, byzantine failures of devices, primary user signal fading, and hidden terminal problems. Another ability of these malicious users is to use their mobility to hide under the changing neighborhood. Existing state of the art techniques either consider a centralized approach in decision making or when considering an ad-hoc network, do not take into account the mobility of the devices which adds unique limitations. We present a light weight multi-fusion based distributed spectrum sensing scheme (MFDSS) in a mobile ad-hoc secondary user network to overcome the aforementioned problems. MFDSS allows each secondary user to collect semi-global information to make decisions in a distributed manner. It uses outlier detection and data fusion to remove incorrect sensing data generated by byzantine failures. Reputation information of the devices is used to suppress a SSDF attack. MFDSS incorporates a reputation propagation and fusion scheme to prevent malicious devices from hiding behind changing topology and to maintain the freshness of the reputation information. Additionally, MFDSS includes an incubation period to discourage devices from changing identity to perform a Sybil attack or to mask a bad reputation. Detailed analysis is presented and the results show significant improvement in correct primary user spectrum occupancy identification. We also show that without the reputation propagation of MFDSS, a malicious device is able to move its position and hide its malicious intentions in the new neighborhood.
机译:在移动自组织认知无线电网络(CRMANET)中,准确识别主要用户频谱占用率是次要用户成功利用频谱的重要要求。恶意移动辅助用户发起频谱感知数据篡改(SSDF)攻击,设备的拜占庭式故障,主要用户信号衰落以及隐藏的终端问题,使这一点变得困难。这些恶意用户的另一种能力是利用其移动性躲藏在不断变化的社区中。现有的现有技术要么在决策中考虑集中式方法,要么在考虑自组织网络时不考虑设备的移动性,这增加了独特的局限性。我们提出了一种轻量级基于多融合的分布式频谱感知方案(MFDSS),以解决上述问题。 MFDSS允许每个辅助用户收集半全局信息,以分布式方式做出决策。它使用异常值检测和数据融合来消除拜占庭式故障产生的不正确的传感数据。设备的信誉信息用于抑制SSDF攻击。 MFDSS合并了信誉传播和融合方案,以防止恶意设备隐藏在不断变化的拓扑后面,并保持信誉信息的新鲜度。此外,MFDSS包含一个潜伏期,以阻止设备更改身份以进行Sybil攻击或掩盖不良声誉。提出了详细的分析,结果表明在正确的主要用户频谱占用识别方面有显着改善。我们还表明,如果没有MFDSS的信誉传播,恶意设备便能够移动其位置并将其恶意意图隐藏在新的社区中。

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