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A network access control framework for 6LoWPAN networks

机译:6LoWPAN网络的网络访问控制框架

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摘要

Low power over wireless personal area networks (LoWPAN), in particular wireless sensor networks, represent an emerging technology with high potential to be employed in critical situations like security surveillance, battlefields, smart-grids, and in e-health applications. The support of security services in LoWPAN is considered a challenge. First, this type of networks is usually deployed in unattended environments, making them vulnerable to security attacks. Second, the constraints inherent to LoWPAN, such as scarce resources and limited battery capacity, impose a careful planning on how and where the security services should be deployed. Besides protecting the network from some well-known threats, it is important that security mechanisms be able to withstand attacks that have not been identified before. One way of reaching this goal is to control, at the network access level, which nodes can be attached to the network and to enforce their security compliance. This paper presents a network access security framework that can be used to control the nodes that have access to the network, based on administrative approval, and to enforce security compliance to the authorized nodes.
机译:无线个人区域网(LoWPAN)的低功耗,尤其是无线传感器网络,是一种新兴的技术,具有很高的潜力,可用于安全监视,战场,智能电网等关键情况,以及电子医疗应用。在LoWPAN中对安全服务的支持被认为是一项挑战。首先,这种类型的网络通常部署在无人值守的环境中,从而使其容易受到安全攻击。其次,LoWPAN固有的约束(例如资源稀缺和电池容量有限)对应如何以及在何处部署安全服务进行了仔细的计划。除了保护网络免受某些众所周知的威胁之外,重要的是,安全机制必须能够抵抗以前未发现的攻击。达到此目标的一种方法是在网络访问级别控制可以将哪些节点连接到网络,并强制其安全合规性。本文提出了一种网络访问安全框架,该框架可用于基于管理批准来控制有权访问网络的节点,并强制执行对授权节点的安全合规性。

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