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A migration-based approach towards resource-efficient wireless structural health monitoring

机译:基于迁移的资源高效无线结构健康监控方法

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Wireless sensor networks have emerged as a complementary technology to conventional, cable-based systems for structural health monitoring. However, the wireless transmission of sensor data and the on-board execution of engineering analyses directly on the sensor nodes can consume a significant amount of the inherently restricted node resources. This paper presents an agent migration approach towards resource-efficient wireless sensor networks. Autonomous software agents, referred to as "onboard agents", are embedded into the wireless sensor nodes employed for structural health monitoring performing simple resource-efficient routines to continuously analyze, aggregate, and communicate the sensor data to a central server. Once potential anomalies are detected in the observed structural system, the on-board agents autonomously request for specialized software programs ("migrating agents") that physically migrate to the sensor nodes to analyze the suspected anomaly on demand. In addition to the localized data analyses, a central information pool available on the central server is accessible by the software agents (and by human users), facilitating a distributed-cooperative assessment of the global condition of the monitored structure. As a result of this study, a 95% reduction of memory utilization and a 96% reduction of power consumption of the wireless sensor nodes have been achieved as compared with traditional approaches.
机译:无线传感器网络已经成为传统的基于电缆的系统的补充技术,用于结构健康监测。但是,传感器数据的无线传输和直接在传感器节点上的板上工程分析的执行会消耗大量固有限制的节点资源。本文提出了一种向资源节约型无线传感器网络的代理迁移方法。自治软件代理(称为“机载代理”)被嵌入到无线传感器节点中,该无线传感器节点用于结构健康状况监视,执行简单的资源有效例程,以连续地将传感器数据分析,聚合并将其传送到中央服务器。一旦在观察到的结构系统中检测到潜在的异常,机载代理便会自动请求专门的软件程序(“迁移代理”),这些软件会物理迁移到传感器节点以按需分析可疑异常。除了本地化的数据分析之外,中央服务器上可用的中央信息池还可以由软件代理(和人工用户)访问,从而有助于对被监视结构的整体状况进行分布式合作评估。这项研究的结果是,与传统方法相比,无线传感器节点的内存利用率降低了95%,功耗降低了96%。

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