论文标题

使用RSA加密算法和Interlock协议确保无线传感器网络免受拒绝拒绝睡眠攻击

Securing Wireless Sensor Networks Against Denial-of-Sleep Attacks Using RSA Cryptography Algorithm and Interlock Protocol

论文作者

Fotohi, Reza, Bari, Somayyeh Firoozi, Yusefi, Mehdi

论文摘要

无线传感器网络(WSN)已在通过无线网络收集和传输数据中大量使用。如今,由于其低成本和易于通信,这种类型的网络已在许多应用程序中用于各种环境中的监视活动。在这些网络中,传感器使用有限的电源,该电源在耗尽后,由于它是不可再生的,网络寿命结束。由于传感器节点的弱点,它们容易受到许多威胁的攻击。威胁性WSN的一项著名攻击是拒绝睡眠(DOS)。 DOS攻击表示通过防止节点进入睡眠和节能模式,表示这些传感器中的能量损失。在本文中,使用异常的传感器检测准确性(ASDA-RSA)方法来抵消DOS攻击以减少消耗的能量量。本文中的ASDA-RSA模式包括两个阶段,以增强WSN的安全性。在第一阶段,使用基于能量和距离的聚类方法选择适当的簇头,在第二阶段,在这里使用RSA加密算法和Interlock协议以及一种身份验证方法来防止DOS攻击。此外,这里通过在NS-2中进行的大量模拟来评估ASDA-RSA方法。仿真结果表明,WSN网络性能指标通过平均吞吐量,数据包输送比(PDR),网络寿命,检测比和平均剩余能量改善。

Wireless sensor networks (WSNs) have been vastly employed in the collection and transmission of data via wireless networks. This type of network is nowadays used in many applications for surveillance activities in various environments due to its low cost and easy communications. In these networks, the sensors use a limited power source which after its depletion, since it is non-renewable, network lifetime ends. Due to the weaknesses in sensor nodes, they are vulnerable to many threats. One notable attack threating WSN is Denial of Sleep (DoS). DoS attacks denotes the loss of energy in these sensors by keeping the nodes from going into sleep and energy-saving mode. In this paper, the Abnormal Sensor Detection Accuracy (ASDA-RSA) method is utilised to counteract DoS attacks to reducing the amount of energy consumed. The ASDA-RSA schema in this paper consists of two phases to enhancement security in the WSNs. In the first phase, a clustering approach based on energy and distance is used to select the proper cluster head and in the second phase, the RSA cryptography algorithm and interlock protocol are used here along with an authentication method, to prevent DoS attacks. Moreover, ASDA-RSA method is evaluated here via extensive simulations carried out in NS-2. The simulation results indicate that the WSN network performance metrics are improved in terms of average throughput, Packet Delivery Ratio (PDR), network lifetime, detection ratio, and average residual energy.

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