协同传感器网络应用中的上下文建模

M. Hefeida, T. Canli, A. Kshemkalyani, A. Khokhar
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引用次数: 7

摘要

无线传感器网络中上下文感知协议的设计是一个新兴的挑战。感知信息的解释在很大程度上依赖于语境,语境感知在有效处理和交流中起着重要作用。在大多数现有的WSN协议中,上下文感知是在单一维度上利用的,并且使用单个上下文参数在应用层或路由层捕获。在本文中,我们开发了一种新的WSN上下文模型,以有效地捕获多维(即来自/到网络堆栈不同层的上下文)的多个上下文参数,并相应地调整网络行为,同时平衡网络负载。新模型不仅考虑了反映节点运行时应用需求的上下文参数,而且考虑了节点的当前状态以及相邻节点的状态和需求(节点间上下文共享)。新模型:(a)表示来自每一层的上下文需求;(b)反映各层当前个体状态;(c)与相邻节点通信(a)和(b),以影响决策过程;(d)在本地分配可用资源,以达到最佳负载平衡。我们展示了该模型在实现WSNs中多跳多包流量路由的跨层优化协议中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Context modeling in collaborative sensor network applications
The design of context aware protocols in Wireless Sensor Networks (WSNs) is an emerging challenge. The interpretation of the sensed information greatly depends on the context and for efficient processing and communication, context awareness can play a major role. In most of the existing WSN protocols, context awareness is exploited in a single dimension and is captured either at the application layer or at the routing layer using a single context parameter. In this paper, we develop a new WSN context model to efficiently capture multiple context parameters in multiple dimensions (i.e. context from/to different layers of the network stack) and adjust the network behavior accordingly while simultaneously balancing the network load. The new model not only considers context parameters reflecting run-time application demands from a node, but also takes into consideration the current state of the node as well as the state and demands of neighboring nodes (inter-nodal context sharing). The new model: (a) represents context demands from each layer; (b) reflects the current individual state of each layer; (c) communicates (a) and (b) to the neighboring nodes to impact the decision process; and (d) locally distributes available resources aiming to achieve an optimal load balance. We show the application of this model in realizing a cross-layer optimized protocol for routing multi-hop and multi-packet traffic in WSNs.
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