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A UAV-assisted CH election framework for secure data collection in wireless sensor networks

机译:UAV辅助的CH选择框架,用于无线传感器网络中的安全数据收集

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With the advance of UAV-related technologies, UAV-assisted wireless communications such as UAV-assisted coverage extension, UAV-assisted relaying and UAV-assisted data distribution and collection are gathering a lot of interests from government and industry fields. More specifically, the UAV-assisted data distribution and collection is implemented as a UAV-based WSN (Wireless Sensor Network). In the UAV-based WSN, a CH (Cluster Head) plays a crucial role such as data collection from members, data transfer toward a UAV and data distribution from the UAV to its members. Due to the role of a CH, many attackers try to make their compromised nodes CHs. In the general CH election framework, since each node determines a CH role by itself, compromised nodes declare themselves as a CH regardless of their disqualification. Generally, a compromised CH consumes much more energy than a normal CH because it keeps fulfilling the CH role to deliver corrupted messages to the sink greedily. Inspired by this phenomenon, we propose a UAV-assisted CH election framework which collects residual energy of nodes, and employs them for electing new CHs and excluding the lowest energy nodes from CH candidates. Simulation results show that our framework outperforms the general CH election framework even when the number of compromised nodes is large. Concerning the CH election period, our framework provides better security and performance than the general CH election framework with a short CH election period. Besides, the variation of node compromise time had no impact on our framework's superiority to the general CH election framework. Another simulation results show that the increase of UAV tour frequency enhances both security and performance of our framework. Our CH election framework is easily applied to a network of IoT devices because the IoT network also demands clustering for energy and data management efficiency. Our future work item is applying as many other CH election schemes as possible to our framework and comparing their security and performance. (C) 2019 Elsevier B.V. All rights reserved.
机译:随着无人飞行器相关技术的进步,无人飞行器辅助的无线通信,例如无人飞行器辅助的覆盖范围扩展,无人飞行器辅助的中继以及无人飞行器辅助的数据分发和收集,引起了政府和工业界的广泛兴趣。更具体地,UAV辅助的数据分发和收集被实现为基于UAV的WSN(无线传感器网络)。在基于UAV的WSN中,CH(簇头)起着至关重要的作用,例如从成员收集数据,向UAV传输数据以及从UAV向其成员分配数据。由于CH的作用,许多攻击者都试图使其受损的节点成为CH。在一般的CH选举框架中,由于每个节点都自行确定CH的角色,因此受到威胁的节点将自己声明为CH,而不考虑其取消资格。通常,受感染的CH比正常的CH消耗更多的能量,因为它不断履行CH角色,将贪婪的消息贪婪地传递到接收器。受此现象的启发,我们提出了一种无人机辅助的CH选举框架,该框架收集节点的剩余能量,并使用它们来选举新的CH,并从CH候选中排除最低能量的节点。仿真结果表明,即使受到损害的节点数量很大,我们的框架也优于常规的CH选举框架。关于CH选举期,我们的框架比CH选举期短的一般CH选举框架提供更好的安全性和性能。此外,节点折衷时间的变化不会影响我们的框架相对于一般CH选举框架的优越性。另一个仿真结果表明,无人机巡回频率的增加增强了我们框架的安全性和性能。我们的CH选举框架很容易应用于IoT设备网络,因为IoT网络还需要群集以提高能源和数据管理效率。我们未来的工作项目是将尽可能多的其他CH选举方案应用于我们的框架,并比较其安全性和性能。 (C)2019 Elsevier B.V.保留所有权利。

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