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The Optimum Design of Location-Dependent Key Management Protocol for a Multiple Sink WSN Using a Random Selected Cell Reporter

机译:使用随机选择单元格报告器的多接收器WSN的位置相关密钥管理协议的优化设计

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The use of wireless sensor networks for the purposes of border surveillance is a very hot topic at the moment. Such a network comprises large numbers of sensor nodes, sparsely located over a wide terrain, where the generated data are collected by multiple sinks located in secure head quarters. Due to its importance and criticality, data disseminated through such a network is vulnerable to outsider attacks. Therefore, a location-dependent key management scheme could be employed in order to provide security in terms of confidentiality and authenticity. This paper presents a novel location-dependent key management protocol for multiple sinks (LKMP-MS) whose design is based on a cell reporters scheme. In this protocol, the generated report regarding any event contains three security levels. In particular, the third level is implemented as an endorsement of the set of cell reporters allocated inside each cell. Accordingly, the generated event report is accepted by the sink. As a result, the adversary would have to compromise all endorsement nodes and all cell reporters selected by all sinks in order to generate a fake report inside a particular spot. This paper introduces a novel algorithm to implement the required revocation for both compromised nodes and cells in order to overcome the possible consequences of these entities being compromised. In order to evaluate and compare the LKMP-MS with recent schemes, a mathematical analysis is implemented and a simulation environment is built based on Contiki and MATLAB to validate the mathematical analyses. Finally, an extensive mathematical analysis is presented in order to calculate the optimum number of cell reporters that gives the highest level of security.
机译:目前,将无线传感器网络用于边界监视是一个非常热门的话题。这样的网络包括稀疏地分布在宽阔地形上的大量传感器节点,其中生成的数据由位于安全总部的多个接收器收集。由于其重要性和重要性,通过这种网络传播的数据容易受到外部攻击。因此,可以采用基于位置的密钥管理方案,以便在机密性和真实性方面提供安全性。本文提出了一种新的基于位置的密钥管理协议,用于多个接收器(LKMP-MS),其设计基于单元报告程序方案。在此协议中,有关任何事件的生成的报告均包含三个安全级别。特别地,第三级被实现为对每个小区内分配的小区报告者集合的认可。因此,生成的事件报告被接收器接受。结果,对手将不得不妥协所有认可节点和所有接收者选择的所有小区报告者,以便在特定地点生成虚假报告。本文介绍了一种新颖的算法,可对受感染的节点和单元实施所需的撤消,以克服这些实体受到损害的可能后果。为了对LKMP-MS与最新方案进行评估和比较,进行了数学分析,并基于Contiki和MATLAB建立了仿真环境以验证数学分析。最后,进行了广泛的数学分析,以计算提供最高安全级别的最佳单元格报告程序数量。

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