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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Mobile IP-Based Protocol for Wireless Personal Area Networks in Critical Environments
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Mobile IP-Based Protocol for Wireless Personal Area Networks in Critical Environments

机译:关键环境中基于无线IP的基于移动IP的协议

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Low-power Wireless Personal Area Networks (LoWPANs) are still in their early stage of development, but the range of conceivable usage scenarios and applications is tremendous. That range is extended by its inclusion in Internet with IPv6 Low-Power Personal Area Networks (6LoWPANs). This makes it obvious that multi-technology topologies, security and mobility support will be prevalent in 6LoWPAN. Mobility based communication increases the connectivity, and allows extending and adapting LoWPANs to changes in their location and environment infrastructure. However, the required mobility is heavily dependent on the individual service scenario and the LoWPAN architecture. In this context, an optimized solution is proposed for critical applications, such as military, fire rescue or healthcare, where people need to frequently change their position. Our scenario is health monitoring in an oil refinery where many obstacles have been found to the effective use of LoWPANs in these scenarios, mainly due to transmission medium features i.e. high losses, high latency and low reliability. Therefore, it is very difficult to provide continuous health monitoring with such stringent requirements on mobility. In this paper, a paradigm is proposed for mobility over 6LoWPAN for critical environments. On the one hand the intra-mobility is supported by GinMAC, which is an extension of IEEE 802.15.4 to support a topology control algorithm, which offers intra-mobility transparently, and Movement Direction Determination (MDD) of the Mobile Node (MN). On the other hand, the inter-mobility is based on pre-set-up of the network parameters in the visited networks, such as Care of Address and channel, to reach a fast and smooth handoff. Pre-set-up is reached since MDD allows discovering the next 6LoWPAN network towards which MN is moving. The proposed approach has been simulated, prototyped, evaluated, and is being studied in a scenario of wearable physiological monitoring in hazardous industrial areas, specifically oil refineries, in the scope of the GinSeng European project.
机译:低功率无线个人局域网(LoWPAN)仍处于发展初期,但是可以想象的使用场景和应用范围非常广泛。通过将其包含在具有IPv6低功耗个人局域网(6LoWPAN)的Internet中,该范围得到了扩展。很明显,在6LoWPAN中将流行多技术拓扑,安全性和移动性支持。基于移动性的通信增加了连接性,并允许扩展和适应LoWPAN以适应其位置和环境基础架构的变化。但是,所需的移动性在很大程度上取决于单个服务方案和LoWPAN架构。在这种情况下,针对人们需要经常改变其位置的关键应用(例如军事,消防或医疗保健)提出了一种优化的解决方案。我们的方案是在炼油厂中进行健康监控,发现在这些方案中有效使用LoWPAN会遇到许多障碍,这主要归因于传输介质的特性,即高损耗,高延迟和低可靠性。因此,很难提供对移动性有如此严格要求的连续健康监测。在本文中,提出了一种针对关键环境在6LoWPAN上实现移动性的范例。一方面,移动性受到GinMAC的支持,GinMAC是IEEE 802.15.4的扩展,支持拓扑控制算法,该算法透明地提供了移动性和移动节点(MN)的移动方向确定(MDD) 。另一方面,互通性基于拜访网络中网络参数(例如转交地址和信道)的预先设置,以实现快速平滑的切换。由于MDD允许发现MN正向其移动的下一个6LoWPAN网络,因此可以进行预设置。在GinSeng欧洲项目的范围内,在危险工业区(尤其是炼油厂)的可穿戴生理监测场景中,对拟议方法进行了模拟,原型设计,评估和研究。

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