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Key distribution scheme for peer-to-peer communication in mobile underwater wireless sensor networks - Springer

机译:移动水下无线传感器网络中对等通信的密钥分发方案-Springer

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Wireless Sensor Networks (WSN) consist of small battery-limited devices called sensor nodes. The communication between sensor nodes is a type of peer-to-peer communication, since each node has the same capability and role. One of the recent application areas of these nodes is underwater sensing. Communication in Underwater Wireless Sensor Networks (UWSN) is challenging since radio frequencies cannot be used. Instead acoustic waves, which cause extra challenges, are used in UWSN. Since UWSNs are deployed in hostile environment, nodes can be captured by an adversary. In order to secure UWSNs, key distribution problem must be addressed. Moreover, UWSNs are inherently mobile since the nodes may be drifted in the sea. In this paper, we propose a key distribution model which is applied for two group mobility models, namely nomadic mobility model and meandering mobility model. In both schemes hierarchical structure is used and communication is handled via well-known Blom’s key distribution scheme. Our simulation results show that mobility causes some temporary decreases in the connectivity, but our schemes help to heal the connectivity performance in time. Moreover, our schemes show good resiliency performance such that capture of some nodes by an adversary only causes very small amount of links between uncaptured nodes to be compromised.
机译:无线传感器网络(WSN)由受电池限制的小型设备组成,称为传感器节点。传感器节点之间的通信是对等通信的一种,因为每个节点具有相同的功能和角色。这些节点的最新应用领域之一是水下传感。水下无线传感器网络(UWSN)中的通信具有挑战性,因为无法使用射频。而是在UWSN中使用了引起额外挑战的声波。由于UWSN部署在敌对环境中,因此对手可以捕获节点。为了保护UWSN,必须解决密钥分发问题。而且,由于节点可能在海中漂移,因此UWSN本质上是可移动的。在本文中,我们提出了一种密钥分配模型,该模型适用于两个群体迁移模型,即游牧迁移模型和蜿蜒迁移模型。在这两种方案中,都使用了层次结构,并且通过众所周知的Blom的密钥分发方案来处理通信。我们的仿真结果表明,移动性会导致连接性暂时下降,但是我们的方案有助于及时恢复连接性能。此外,我们的方案显示出良好的弹性性能,因此对手捕获某些节点只会导致未捕获的节点之间的链接数量很少。

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