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Trust based security mechanisms for wireless sensor networks.

机译:无线传感器网络的基于信任的安全机制。

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Wireless sensor networks are emerging as effective tools in the gathering and dissemination of data. They can be applied in many fields including health, environmental monitoring, home automation and the military. Like all other computing systems it is necessary to include security features, so that security sensitive data traversing the network is protected. However, traditional security techniques cannot be applied to wireless sensor networks. This is due to the constraints of battery power, memory, and the computational capacities of the miniature wireless sensor nodes. Therefore, to address this need, it becomes necessary to develop new lightweight security protocols. This dissertation focuses on designing a suite of lightweight trust-based security mechanisms and a cooperation enforcement protocol for wireless sensor networks.;This dissertation presents a trust-based cluster head election mechanism used to elect new cluster heads. This solution prevents a major security breach against the routing protocol, namely, the election of malicious or compromised cluster heads. This dissertation also describes a location-aware, trust-based, compromise node detection, and isolation mechanism. Both of these mechanisms rely on the ability of a node to monitor its neighbors. Using neighbor monitoring techniques, the nodes are able to determine their neighbors' reputation and trust level through probabilistic modeling. The mechanisms were designed to mitigate internal attacks within wireless sensor networks. The feasibility of the approach is demonstrated through extensive simulations.;The dissertation also addresses non-cooperation problems in multi-user wireless sensor networks. A scalable lightweight enforcement algorithm using evolutionary game theory is also designed. The effectiveness of this cooperation enforcement algorithm is validated through mathematical analysis and simulation.;This research has advanced the knowledge of wireless sensor network security and cooperation by developing new techniques based on mathematical models. By doing this, we have enabled others to build on our work towards the creation of highly trusted wireless sensor networks. This would facilitate its full utilization in many fields ranging from civilian to military applications.
机译:无线传感器网络正在成为收集和分发数据的有效工具。它们可应用于许多领域,包括健康,环境监测,家庭自动化和军事。像所有其他计算系统一样,有必要包括安全功能,以便保护遍历网络的安全敏感数据。但是,传统的安全技术无法应用于无线传感器网络。这是由于电池电量,内存和微型无线传感器节点的计算能力的限制。因此,为了满足这一需求,有必要开发新的轻量级安全协议。本文主要针对无线传感器网络设计一套轻量级的基于信任的安全机制和协作强制协议。本文提出了一种基于信任的簇头选举机制,用于选举新的簇头。此解决方案可防止针对路由协议的重大安全漏洞,即,恶意或受损集群头的选举。本文还描述了一种基于位置的感知,基于信任的折衷节点检测和隔离机制。这两种机制都依赖于节点监视其邻居的能力。使用邻居监视技术,节点能够通过概率建模来确定其邻居的信誉和信任级别。这些机制旨在缓解无线传感器网络内部的攻击。通过大量的仿真实验证明了该方法的可行性。本文还解决了多用户无线传感器网络中的非合作问题。还设计了一种使用进化博弈论的可伸缩轻量级执行算法。通过数学分析和仿真验证了该协作强制算法的有效性。本研究通过开发基于数学模型的新技术,提高了无线传感器网络安全性和协作的知识。通过这样做,我们使其他人可以在建立高度信任的无线传感器网络的基础上继续努力。这将促进其在从民用到军事应用的许多领域中的充分利用。

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