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Secure Key Management Scheme With Good Resiliency For Hierarchical Network Using Combinatorial Theory

机译:使用组合理论,具有良好弹性的安全密钥管理方案

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Combinatorial designs are powerful structures for key management in wireless sensor networks to address good connectivity and also security against external attacks in large scale networks. Symmetric key foundation is the most appropriate model for secure exchanges in WSNs among the ideal models. The core objective is to enhance and evaluate certain issues like attack on the nodes, to provide better key strength, better connectivity, security in interaction among the nodes. The keys distributed by the base station to cluster head are generated using Symmetric Balanced Incomplete Block Design (SBIBD). The keys distributed by cluster head to its member nodes are generated using Symmetric Balanced Incomplete Block Design (SBIBD) and Keys are refreshed periodically to avoid stale entries. Compromised sensor nodes can be used to insert false reports (spurious reports) in wireless sensor networks. The idea of interaction between the sensor nodes utilizing keys and building up a protected association helps in making sure the network is secure. Compared with similar existing schemes, our approach can provide better security.
机译:组合设计是无线传感器网络中的关键管理的强大结构,以解决良好的连接以及大规模网络中的外部攻击安全性。对称密钥基础是理想模型中WSN中的安全交换最合适的模型。核心目标是增强和评估攻击节点的某些问题,以提供更好的关键实力,更好的连接,节点之间的交互安全性。使用对称平衡不完全块设计(SBIBD)生成由基站分布到群集头的键。使用对称平衡不完全块设计(SBIBD)生成分布到其成员节点的键,并定期刷新键以避免陈旧条目。损害传感器节点可用于在无线传感器网络中插入错误报告(虚假报告)。利用密钥和构建受保护关联的传感器节点之间的交互的想法有助于确保网络是安全的。与类似现有计划相比,我们的方法可以提供更好的安全性。

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