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A Cross-Layer Trust Evaluation Protocol for Secured Routing in Communication Network of Smart Grid

机译:智能电网通信网络中安全路由的跨层信任评估协议

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摘要

Cybersecurity is one of the major issues to be considered while designing a communication network for Smart Grid (SGCN). However, due to the openness and unpredictable nature of the wireless network, it is often prone to different adversarial attacks that exploit vulnerabilities to launch cross-layer attacks during data transmission. To address this issue, we proposed a novel trust-based routing framework with Bayesian Inference to calculate direct trust and Dempster-Shafer (D-S) theory is used to compute the indirect trust by combining the evidence collected from reliable neighbours. The analytical hierarchy process (AHP) calculates the node's creditability trust by taking cross-layer metrics like transmission rate, buffering capacity and received signal strength. Further, the fuzzy theory is combined with BDS-AHP to incorporate fairness in utilizing cross-layer metrics for calculating the link trust to enable reliable routing. Extensive experiments are carried to evaluate the performance of the proposed fuzzy-based trusted routing algorithm (FBDS-AHP) with the presence of malicious nodes launching packet-dropping, bad-mouthing, on-off and Sybil attacks. Simulation result proves that the proposed trust evaluation algorithm achieves promising results in defending against these attacks thereby providing improved reliability and ensures secured routing in SGCN.
机译:网络安全是设计用于智能电网(SGCN)的通信网络的主要问题之一。然而,由于无线网络的开放性和不可预测性,它通常容易出现不同的对抗性攻击,该攻击利用漏洞在数据传输期间启动跨层攻击。为了解决这个问题,我们提出了一种新的基于信任的路由框架,与贝叶斯推理的基于信任的路由框架,以计算直接信任,Dempster-Shafer(D-S)理论用于通过将从可靠邻居收集的证据组合来计算间接信任。分析层次处理(AHP)通过采用传输速率,缓冲容量和接收信号强度等跨层度量来计算节点的信誉信任。此外,模糊理论与BDS-AHP相结合,以利用用于计算链路信任来实现链路信任的公平性,以实现可靠的路由。携带广泛的实验,以评估所提出的模糊的可信路由算法(FBDS-AHP)的性能与发射数据包丢弃,坏口,开关和Sybil攻击的恶意节点的存在。仿真结果证明,所提出的信任评估算法实现了有希望捍卫这些攻击的导致,从而提供了提高的可靠性,并确保在SGCN中确保安全路由。

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