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An innovative hydraulic turbine governor for predictive maintenance of hydropower plant

机译:一种创新的水电站预测维护液压涡轮机调速器

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An important part of the enterprises budget is devoted to inspecting, repairing and modifying components, all this being done often too early or too late. Therefore, modern hydropower plants are now active by pursuing transition from conventional scheduled maintenance as too expensive, to predictive maintenance more adapted to detecting and diagnosing just in time the degradations in order to anticipate the failures. The predictive maintenance is mainly based on conditioning monitoring, fault diagnosis and prognosis, which allow for taking the right maintenance decision at the right time and at the right place. These three characteristics of the decision lead, as a consequence, to a combination of the conventional hierarchical model of the operating system with a new distributed one founded on the co-operation of "intelligent" field components embedding data processing, storage and communication capabilities. So, the operational IT architecture which supports the predictive maintenance strategy, has to integrate an interoperability with these types of components. The paper aims at describing the development of an "intelligent" interoperable governor that supports some predictive maintenance functions. It allows for not only performing fault and degradation diagnosis on frequency, gate opening and other signals, but also automatically reconfiguring its operation mode if some faults happen. The prototype of the proposed governor is tested and validated to be then developed into an industrial product.
机译:企业预算的重要组成部分致力于检查,修复和修改组件,这一切都是过早或太晚所做的。因此,现代水电站现在通过从传统的预定维护的转换为太昂贵,预测维护更适应检测和诊断到时间下降,以便预测失败。预测性维护主要基于调理监测,故障诊断和预后,这允许在合适的时间和正确的位置采取正确的维护决定。决策的这三个特征是,由于操作系统的传统分层模型的组合,其中具有在嵌入数据处理,存储和通信能力的“智能”现场分量的合作的新分布式。因此,支持预测维护策略的操作IT架构必须与这些类型的组件集成互操作性。本文旨在描述支持一些预测维护功能的“智能”互操作调速器的开发。它允许不仅对频率,栅极开口和其他信号进行故障和劣化诊断,还可以在某些故障发生时自动重新配置其操作模式。测试并验证了拟议调速器的原型,然后将其开发为工业产品。

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