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Distributed consensus-based security mechanisms in cognitive radio mobile ad hoc networks

机译:认知无线电移动自组织网络中基于共识的分布式安全机制

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摘要

Cognitive radios (CRs), which are capable of sensing its surrounding environment and adapting its internal parameters, have been considered in mobile ad hoc networks (MANETs). The area of security in CR-MANETs has received far less attention than other areas. However, some distinct characteristics of CRs introduce new non-trivial security risks to CR-MANETs. In this article, the authors study spectrum sensing data falsification (SSDF) attacks to CR-MANETs, in which intruders send false local spectrum sensing results in cooperative spectrum sensing, and it will result in wrong spectrum sensing decisions by CRs. The authors present a novel bio-inspired consensus-based cooperative spectrum sensing scheme to counter SSDF attacks in CRMANETs. Their scheme is based on recent advances in consensus algorithms that have taken inspiration from self-organising behaviour of animal groups such as birds, fish, ants, honeybees and others. Unlike the existing schemes, there is no need for a common receiver to do the data fusion for reaching the final decision to counter SSDF attacks. The scheme has self-configuration and self-maintenance capabilities. Moreover, in order to further improve the security of CR-MANETs, the authors present an authentication scheme using identity (ID)-based cryptography with threshold secret sharing. Simulation results are presented to show the effectiveness of the proposed schemes.
机译:在移动自组织网络(MANET)中已经考虑了能够感知其周围环境并适应其内部参数的认知无线电(CR)。 CR-MANET中的安全领域受到的关注远远少于其他领域。但是,CR的某些明显特征给CR-MANET带来了新的重要安全风险。在本文中,作者研究了对CR-MANET的频谱感知数据篡改(SSDF)攻击,其中入侵者在协作频谱感知中发送虚假的本地频谱感知结果,这将导致CR做出错误的频谱感知决策。作者提出了一种新颖的,基于生物启发的基于共识的协作频谱感知方案,以应对CRMANET中的SSDF攻击。他们的方案基于共识算法的最新进展,这些算法是从鸟类,鱼类,蚂蚁,蜜蜂等动物群体的自组织行为中获得启发的。与现有方案不同,无需通用接收器进行数据融合即可达成对抗SSDF攻击的最终决策。该方案具有自我配置和自我维护的能力。此外,为了进一步提高CR-MANET的安全性,作者提出了一种使用基于身份(ID)的加密技术和阈值秘密共享的身份验证方案。仿真结果表明了所提方案的有效性。

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