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A Method to Select Next Hop Node for Improving Energy Efficiency in LEAP-Based WSNs

机译:基于LEAP的无线传感器网络中提高能量效率的下一跳节点选择方法

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In wireless sensor networks, sensors have stringent energy and computation requirements as they must function unattended. The sensor nodes can be compromised by adversaries who attack network layers such as in sinkhole attacks. Sinkhole attacks have the goal of changing routing paths and snatching data surrounding the compromised node. A localized encryption and authentication protocol (LEAP) observes different types of messages exchanged between sensors that have different security requirements to cope with the attack. Even though this original method excels in security communication using multiple keys, the data is transmitted without optimal selection of the next nodes. In this paper, our proposed method selects the optimal next node based on a fuzzy logic system. We evaluated the energy and security performances of our method against sinkhole attack. Our focus is to improve energy efficiency and maintain the same security level as compared to LEAP. Experimental results indicated that the proposed method saves up to 5 % of the energy while maintaining the security level against the attack as compared to LEAP.
机译:在无线传感器网络中,传感器具有严格的能量和计算要求,因为它们必须在无人看管的情况下发挥作用。传感器节点可能受到攻击网络层(例如在污水坑攻击中)的对手的威胁。污水池攻击的目标是更改路由路径并在受感染节点周围抢走数据。本地加密和认证协议(LEAP)观察具有不同安全要求以应对攻击的传感器之间交换的不同类型的消息。即使此原始方法在使用多个密钥的安全通信方面表现出色,但仍在传输数据时没有最佳选择下一个节点。在本文中,我们提出的方法基于模糊逻辑系统选择最优的下一个节点。我们评估了我们的方法对下陷攻击的能量和安全性能。与LEAP相比,我们的重点是提高能源效率并保持相同的安全级别。实验结果表明,与LEAP相比,该方法可节省多达5%的能量,同时保持针对攻击的安全级别。

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