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Implementation of a multiagent-based paradigm for decentralized real-time structural health monitoring

机译:实施基于多元的范式的分散实时结构健康监测

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Engineering structures such as wind turbines require continuous monitoring to ensure structural safety, to reduce the overall maintenance and repair costs and, ultimately, to achieve extended lifetimes and a greater economic viability. For that purpose, an automated SHM system for wind turbines has been developed and installed on a 500 kW wind turbine in Germany. During its operation, temporary malfunctions of the installed sensing units have been observed. These malfunctions, such as temporary sensor breakdowns which are well known from real-time SHM systems, might cause the loss of valuable monitoring data if not detected timely. A multi-agent system, which is capable of self-detecting system malfunctions and notifying the human individuals automatically, has been developed and integrated into the existing SHM system. The SHM system and its subsystem, the multi-agent system, have been in continuous operation since 2009. Since then, various malfunctions have automatically been detected and appropriate actions have been taken in a timely manner. As a result, the malfunctioning of the sensors did not lead to significant data loss, thus enhancing the quality of the SHM system.
机译:风力涡轮机等工程结构需要连续监控以确保结构安全,以降低整体维护和维修成本,最终实现延长的生命和更大的经济可行性。为此目的,已经开发了一种用于风力涡轮机的自动SHM系统,并安装在德国的500千瓦风力涡轮机上。在其操作期间,已经观察到安装的传感单元的临时故障。这些故障,例如从实时SHM系统中众所周知的临时传感器故障,如果未及时检测,可能导致损失有价值的监测数据。一种多功能系统,能够自动检测系统发生故障并自动通知人类,并集成到现有的SHM系统中。 SHM系统及其子系统是自2009年以来一直在连续运行。从那时起,自动检测到各种故障,并及时采取适当的行动。结果,传感器的故障导致了显着的数据损失,从而提高了SHM系统的质量。

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