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Historical Building Monitoring Using an Energy-Efficient Scalable Wireless Sensor Network Architecture

机译:使用节能的可扩展无线传感器网络架构进行历史建筑监控

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We present a set of novel low power wireless sensor nodes designed for monitoring wooden masterpieces and historical buildings, in order to perform an early detection of pests. Although our previous star-based system configuration has been in operation for more than 13 years, it does not scale well for sensorization of large buildings or when deploying hundreds of nodes. In this paper we demonstrate the feasibility of a cluster-based dynamic-tree hierarchical Wireless Sensor Network (WSN) architecture where realistic assumptions of radio frequency data transmission are applied to cluster construction, and a mix of heterogeneous nodes are used to minimize economic cost of the whole system and maximize power saving of the leaf nodes. Simulation results show that the specialization of a fraction of the nodes by providing better antennas and some energy harvesting techniques can dramatically extend the life of the entire WSN and reduce the cost of the whole system. A demonstration of the proposed architecture with a new routing protocol and applied to termite pest detection has been implemented on a set of new nodes and should last for about 10 years, but it provides better scalability, reliability and deployment properties.
机译:我们提出了一套新颖的低功耗无线传感器节点,旨在监控木制杰作和历史建筑,以便尽早发现有害生物。尽管我们以前的基于星型的系统配置已经运行了13年以上,但是它不能很好地扩展到大型建筑物的传感或部署数百个节点时。在本文中,我们演示了基于集群的动态树分层无线传感器网络(WSN)架构的可行性,其中将射频数据传输的实际假设应用于集群构建,并使用异构节点的混合来最大程度地降低无线网络的经济成本。整个系统,最大程度地节省叶子节点的功耗。仿真结果表明,通过提供更好的天线和一些能量收集技术来对一部分节点进行专业化处理,可以大大延长整个WSN的寿命,并降低整个系统的成本。已在一组新节点上实施了具有新路由协议并应用于白蚁害虫检测的拟议架构的演示,该演示应持续约10年,但它提供了更好的可伸缩性,可靠性和部署属性。

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