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Effective Metadata Management in Federated Sensor Networks

机译:联合传感器网络中有效的元数据管理

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摘要

As sensor networks become increasingly popular, heterogeneous sensor networks are being interconnected into federated sensor networks and provide huge volumes of sensor data to large user communities for a variety of applications. Effective metadata management plays a crucial role in processing and properly interpreting raw sensor measurement data, and needs to be performed in a collaborative fashion. Previous data management work has concentrated on metadata and data as two separate entities and has not provided specific support for joint real-time processing of metadata and sensor data. In this paper we propose a framework that allows effective sensor data and metadata management based on real-time metadata creation and join processing over federated sensor networks. The framework is established on three key mechanisms: (i) distributed metadata joins to allow streaming sensor data to be efficiently processed with their associated metadata, regardless of their location in the network, (ii) automated metadata generation to permit users to define monitoring conditions or operations for extracting and storing metadata from streaming sensor data, (iii) advanced metadata search utilizing various techniques specifically designed for sensor metadata querying and visualization. This framework is currently deployed and used as the backbone of a concrete application in environmental science and engineering, the Swiss Experiment, which runs a wide variety of measurements and experiments for environmental hazard forecasting and warning.
机译:由于传感器网络变得越来越受欢迎,异构传感器网络正在互连到联合传感器网络中,并为各种应用提供大量用户社区提供大量的传感器数据。有效的元数据管理在处理和适当地解释原始传感器测量数据中起着至关重要的作用,并且需要以协同方式执行。以前的数据管理工作集中在元数据和数据上,作为两个单独的实体,并且没有提供特定的支持元数据和传感器数据的联合实时处理。在本文中,我们提出了一种框架,其允许基于实时元数据创建的有效传感器数据和元数据管理,并通过联合传感器网络加入处理。该框架是在三个关键机制上建立的:(i)分布式元数据连接以允许流传输传感器数据以与其相关联的元数据有效地处理,而不管网络中的位置如何,(ii)自动元数据生成,以允许用户定义监控条件或者从流传感器数据中提取和存储元数据的操作,(iii)利用专门为传感器元数据查询和可视化设计的各种技术进行高级元数据搜索。该框架目前部署并用作环境科学与工程的具体应用的骨干,瑞士实验,为环境危害预测和警告运行了各种测量和实验。

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