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NIASHPT: a novel intelligent agent-based strategy using hello packet table (HPT) function for trust Internet of Things

机译:NIASHPT:一种新颖的基于智能代理的策略,使用Hello数据包表(HPT)函数用于信任事物

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Internet of Things (IoTs) is a new concept in computer science that connects the objects with limited resources to unreliable internet through different technologies. The fundamental components of IoT (e.g., the wireless sensor networks and the internet) have an unsecured foundation that leads to different vulnerabilities such as vulnerability against a blackhole attack. In a blackhole attack, the attacker fakes itself as the shortest path to the destination, which is a node here. This causes the routing packets to not reach the destination. In this study, we offer a novel intelligent agent-based strategy using the hello packet table (NIASHPT) to deal with these problems by discovering the blackhole attacks. The proposed NIASHPT method provides an intrusion detection system scheme to defend against blackhole attacks and reduce or eliminate such attacks. This method consists of three phases: In the first phase, each node listens to its adjacent nodes and then applies a pre-routing process. In the stages of adjacent node listening and pre-routing, we attempt to find the blackhole attacks. In the second phase of the proposed method, the malicious nodes are detected and separated from the IoT network to avoid emerging attacks along the route from the source to the destination. In the third phase, the selected route from the source to the destination is checked. The method is evaluated here via extensive simulations carried out in the NS-3 environment. The experimental results of four scenarios demonstrated that the NIASHPT method can achieve a false positive rate of 19.453%, a false negative rate of 22.19%, a detection rate of 80.5%, a PDR of 89.56%, and a packet loss rate of 10.04% in the case of launching a blackhole attack.
机译:事情互联网(IOTS)是计算机科学中的一个新概念,通过不同的技术将资源有限的对象连接到不可靠的互联网。物联网(例如,无线传感器网络和互联网)的基本组件具有不安全的基础,导致不同的漏洞,例如对黑洞攻击的脆弱性。在黑洞攻击中,攻击者将本身作为目的地的最短路径伪造,这是这里的一个节点。这会导致路由数据包未到达目的地。在这项研究中,我们提供了一种使用Hello Packet Table(NIASHPT)来通过发现黑洞攻击来处理这些问题的新颖智能代理的策略。该提议的NIASHPT方法提供了一种入侵检测系统方案,以防御黑洞攻击并减少或消除这种攻击。此方法由三个阶段组成:在第一阶段中,每个节点侦听其相邻节点,然后应用预路由过程。在邻近节点收听和预路由的阶段,我们试图找到黑洞攻击。在所提出的方法的第二阶段,检测恶意节点并与物联网分离,以避免从源到目的地的路线的新出现攻击。在第三阶段,检查从源到目的地的所选路由。这里通过NS-3环境中进行的广泛模拟评估该方法。四种情景的实验结果表明,NIASHPT方法可以达到误阳性率为19.453%,假负率为22.19%,检出率为80.5%,PDR为89.56%,丢包率为10.04%在发射黑洞攻击的情况下。

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