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Location-Aware Security Services for Wireless Sensor Networks using Network Coding

机译:使用网络编码的无线传感器网络的位置感知安全服务

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Security services such as data confidentiality, authenticity, and availability are critical in wireless sensor networks deployed in adversarial environments. Due to the resource constrains of sensor nodes, the existing protocols currently in use in ad-hoc networks cannot be employed in wireless sensor networks. In this paper, we propose a protocol called location-aware network coding security (LNCS) that provides all the aforementioned security services. By dividing the terrain into non-overlapping cells, the nodes take advantage of the location information to derive different location binding keys. An event in the field is sensed by several nodes and aggregated by all of them. Using a secret sharing algorithm, the aggregated information is divided into several shares that are forwarded toward the sink in a cell-by-cell fashion. The key idea in LNCS is that all the nodes involved in the protocol collaborate in every phase. We employ random network coding in our scheme to provide data availability significantly higher than that in other schemes. To generate authentication information, a hash tree is constructed on the generated packets. The packets that fail the authenticity test are considered as bogus and filtered enroute. Every node transmits only a small fraction of the generated packets along the corresponding authentication information to the next cell. The sink is the final entity being able to reconstruct the original message using a few shares of the message. We have provided a comparison between our scheme and previously proposed schemes. The results reveal significant improvement in data availability while maintaining the same level of data confidentiality and authenticity.
机译:数据机密性,真实性和可用性等安全服务在对抗环境中部署的无线传感器网络中是至关重要的。由于传感器节点的资源限制,在无线传感器网络中不能使用当前用于ad-hoc网络中的现有协议。在本文中,我们提出了一种称为位置感知网络编码安全性(LNC)的协议,该安全性提供所有上述安全服务。通过将地形划分为非重叠的小区,节点利用了定位信息来导出不同的位置绑定密钥。该字段中的事件由多个节点感测并由所有节点聚合。使用秘密共享算法,聚合信息被划分为几个共享,以逐个细胞的方式转发到沉没。 LNC中的关键思想是,所有涉及协议中的所有节点都会在每个阶段进行协作。我们在我们的方案中采用随机网络编码,以提供数据可用性明显高于其他方案。为了生成身份验证信息,在生成的数据包上构建哈希树。未通过真实性测试的数据包被视为虚假和过滤的veroute。每个节点沿着相应的认证信息发送到下一个小区的一小部分生成的分组。水槽是最终实体能够使用消息的一些份额来重建原始消息。我们在我们的计划与以前提出的计划之间提供了比较。结果显示数据可用性的显着提高,同时保持相同的数据机密性和真实性。

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