无线传感器网络中的分布式空间分析

Farhana Jabeen, A. Fernandes
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引用次数: 5

摘要

环境监测是无线传感器网络的一个重要应用领域。环境无线传感器网络的一个重要问题是表征瞬态物理现象在空间上的动态行为。在移动级WSN的情况下,在WSN内部计算的解决方案对于能源效率至关重要。在此背景下,本文对无线传感器网络中网络处理的文献的主要贡献有三个方面。这篇论文进一步发展了一个代数框架,人们可以用它来表达和评估复杂的拓扑关系,而不是永久特征(例如,建筑物,或地理特征,如湖泊和河流)和瞬态现象(例如,耕地上的薄雾区域)的几何表示。然后,本文描述了由该框架表示的区域上的空间代数操作的分布式实现,从而能够识别区域之间的拓扑关系。最后,本文给出了实验证据,表明所描述的技术导致了高效的运行时行为。综上所述,这些贡献构成了进一步实现表达空间分析的高级规范,以便在WSN内有效执行。
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Distributed Spatial Analysis in Wireless Sensor Networks
Environmental monitoring is an important application area for wireless sensor networks (WSNs). An important problem for environmental WSNs is the characterization of the dynamic behaviour of transient physical phenomena over space. In the case of mote-level WSNs, a solution that is computed inside the WSN is essential for energy efficiency. In this context, the main contributions of this paper to the literature on in network processing in WSNs are threefold. The paper further develops an algebraic framework with which one can express and evaluate complex topological relationships over geometrical representations of permanent features (e.g., buildings, or geographical features such as lakes and rivers) and of transient phenomena (e.g., areas of mist over a cultivated field). The paper then describes distributed implementations of spatial-algebraic operations over the regions represented by that framework, thereby enabling identification of topological relationships between regions. Finally, the paper presents experimental evidence that the techniques described lead to efficient runtime behaviour. Taken together, these contributions constitute a further step towards enabling the high-level specification of expressive spatial analyses for efficient execution inside a WSN.
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