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SeC‐SDWSN: Secure cluster‐based SDWSN environment for QoS guaranteed routing in three‐tier architecture

机译:SeC‐SDWSN:基于安全集群的SDWSN环境,可在三层体系结构中提供QoS保证的路由

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摘要

Software defined wireless sensor network (SDWSN) is a recent evolution in networking that improves network performance and scalability. However, Quality of Service (QoS) and security are major the issues in SDWSN due to inefficient route selection (traffic load minimization algorithm) and insecure cryptography scheme (homomorphic algorithm). This paper proposes novel three-tier architecture for secure cluster-based SDWSN (SeC-SDWSN) environment to ensure QoS and security for WSN using SDN. In the first tier, sensor nodes are segregated into multiple clusters by secure hash tree-based clustering (SHTC) algorithm. Within each secure cluster, data transmission is performed through optimal route selected by adaptive spider monkey optimization (ASMO) algorithm in which two new fitness factors (F-1, F-2) are formulated by multiple QoS metrics. For data security, parallel advanced encryption standard with cipher block chaining (PAES-CBC) algorithm is proposed. Aggregated ciphertext is transmitted to optimal switch in the second tier by using fuzzy weighted technique for order preference by similarity to ideal solution (FW-TOPSIS) algorithm according to selection criteria. Switches forward the data to sink node based on flow rules deployed by SDN controllers in the third tier. SDN controllers provide global view on the entire network and deploy flow rules on switches in accordance to network status and security level. Extensive simulation in ns-3 shows that the proposed three-tier architecture achieves 5% throughput improvement, 7.8% PDR improvement, and 16% energy consumption improvement.
机译:软件定义的无线传感器网络(SDWSN)是网络技术的最新发展,可提高网络性能和可扩展性。但是,由于路由选择效率低(流量负载最小化算法)和加密方案不安全(同态算法),服务质量(QoS)和安全性是SDWSN中的主要问题。本文针对基于安全集群的SDWSN(SeC-SDWSN)环境提出了一种新颖的三层架构,以确保使用SDN的WSN的QoS和安全性。在第一层中,通过基于安全哈希树的聚类(SHTC)算法将传感器节点分为多个群集。在每个安全群集中,数据传输是通过自适应蜘蛛猴优化(ASMO)算法选择的最佳路由执行的,该算法通过两个QoS指标制定了两个新的适应度因子(F-1,F-2)。为了提高数据安全性,提出了具有密码块链接的并行高级加密标准(PAES-CBC)算法。根据选择标准,采用与理想解(FW-TOPSIS)算法相似的模糊优先顺序加权加权技术,将聚合密文传输到第二层的最优交换。根据第三层SDN控制器部署的流规则将数据转发到接收节点。 SDN控制器可提供整个网络的全局视图,并根据网络状态和安全级别在交换机上部署流规则。在ns-3中进行的广泛仿真表明,所提出的三层体系结构实现了5%的吞吐量提高,7.8%的PDR改进和16%的能耗降低。

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