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SPS and DPS: Two New Grid-Based Source Location Privacy Protection Schemes in Wireless Sensor Networks

机译:SPS和DPS:无线传感器网络中的两个基于网格的源位置隐私保护方案

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摘要

Wireless Sensor Networks (WSNs) have been widely deployed to monitor valuable objects. In these applications, the sensor node senses the existence of objects and transmitting data packets to the sink node (SN) in a multi hop fashion. The SN is a powerful node with high performance and is used to collect all the information sensed by the sensor nodes. Due to the open nature of the wireless medium, it is easy for an adversary to trace back along the routing path of the packets and get the location of the source node. Once adversaries have got the source node location, they can capture the monitored targets. Thus, it is important to protect the source node location privacy in WSNs. Many methods have been proposed to deal with this source location privacy protection problem, and most of them provide routing path diversity by using phantom node (PN) which is a fake source node used to entice the adversaries away from the actual source node. But in the existing schemes, the PN is determined by the source node via flooding, which not only consumes a lot of communication overhead, but also shortens the safety period of the source node. In view of the above problems, we propose two new grid-based source location privacy protection schemes in WSNs called grid-based single phantom node source location privacy protection scheme (SPS) and grid-based dual phantom node source location privacy protection scheme (DPS) in this paper. Different from the idea of determining the phantom node by the source node in the existing schemes, we propose to use powerful sink node to help the source node to determine the phantom node candidate set (PNCS), from which the source node randomly selects a phantom node acting as a fake source node. We evaluate our schemes through theoretical analysis and experiments. Experimental results show that compared with other schemes, our proposed schemes are more efficient and achieves higher security, as well as keeping lower total energy consumption. Our proposed schemes can protect the location privacy of the source node even in resource-constrained wireless network environments.
机译:无线传感器网络(WSN)已被广泛部署以监控有价值的物体。在这些应用中,传感器节点在多跳时,传感器节点感测到对象的存在并将数据分组发送到水槽节点(SN)。 SN是一个强大的节点,性能高,用于收集传感器节点所感测的所有信息。由于无线介质的开放性,对敌人沿着数据包的路由路径追溯并获取源节点的位置。一旦对手获得了源节点位置,它们就可以捕获受监视的目标。因此,重要的是保护WSN中的源节点位置隐私是很重要的。已经提出了许多方法来处理该源地点隐私保护问题,并且大多数通过使用幻像节点(PN)提供路由路径分集,它是用于侵入远离实际源节点的伪劣源节点。但是在现有方案中,PN由源节点通过洪水确定,这不仅消耗了大量的通信开销,而且还缩短了源节点的安全周期。鉴于上述问题,我们提出了两个新的基于网格的源位置隐私保护方案,称为网格的单个幻像节点源位置隐私保护方案(SPS)和基于网格的双模态节点源位置隐私保护方案(DPS ) 在本文中。与源节点在现有方案中确定幻像节点的想法不同,我们建议使用强大的汇聚节点来帮助源节点来确定幻像节点候选集(PNC),源节点随机选择幻像节点充当假源节点。我们通过理论分析和实验评估我们的计划。实验结果表明,与其他方案相比,我们提出的方案更有效,达到更高的安全性,以及保持较低的总能耗。即使在资源受限的无线网络环境中,我们建议的方案也可以保护源节点的位置隐私。

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