B4SDC:用于manet安全数据收集的区块链系统

Gao Liu, Huidong Dong, Zheng Yan
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引用次数: 1

摘要

安全数据采集是移动自组网(manet)攻击检测和安全度量的重要组成部分。由于manet没有固定的基础设施,作为收集器的检测节点需要发现到收集节点的可用路由进行数据收集。值得注意的是,路由发现会受到很多攻击(如虫洞攻击),因此检测节点还需要在路由发现过程中收集与安全相关的数据,并对这些数据进行分析,以确定可靠的路由。然而,很少有文献对manet中安全相关数据的收集提供激励,因此检测节点可能无法收集足够的数据,这极大地影响了攻击检测和安全度量的准确性。在本文中,我们提出了B4SDC,一种用于manet中安全相关数据收集的区块链系统。通过控制路由发现中RREQ转发的规模,收集器可以约束其支付,同时使控制信息的每个转发方(即RREQ和rrep)获得尽可能多的奖励,以保证公平性。同时,B4SDC通过协同收据上报避免了合谋攻击,通过安全的数字签名避免了欺骗攻击。B4SDC基于一种新颖的权益证明共识机制,通过消息转发积累权益,既为所有参与节点提供了激励,又避免了分叉,同时保证了高效率和真正的去中心化。我们从激励和安全性方面分析了B4SDC,并通过仿真评估了其性能。深入的分析和实验结果表明了B4SDC的有效性。
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B4SDC: A Blockchain System for Security Data Collection in MANETs
Security-related data collection is an essential part for attack detection and security measurement in Mobile Ad Hoc Networks (MANETs). Due to no fixed infrastructure of MANETs, a detection node playing as a collector should discover available routes to a collection node for data collection. Notably, route discovery suffers from many attacks (e.g., wormhole attack), thus the detection node should also collect securityrelated data during route discovery and analyze these data for determining reliable routes. However, few literatures provide incentives for security-related data collection in MANETs, and thus the detection node might not collect sufficient data, which greatly impacts the accuracy of attack detection and security measurement. In this paper, we propose B4SDC, a blockchain system for security-related data collection in MANETs. Through controlling the scale of RREQ forwarding in route discovery, the collector can constrain its payment and simultaneously make each forwarder of control information (namely RREQs and RREPs) obtain rewards as much as possible to ensure fairness. At the same time, B4SDC avoids collusion attacks with cooperative receipt reporting, and spoofing attacks by adopting a secure digital signature. Based on a novel Proof-of-Stake consensus mechanism by accumulating stakes through message forwarding, B4SDC not only provides incentives for all participating nodes, but also avoids forking and ensures high efficiency and real decentralization at the same time. We analyze B4SDC in terms of incentives and security, and evaluate its performance through simulations. The thorough analysis and experimental results show the efficacy and effectiveness of B4SDC.
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