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INTEGRATED GAS TURBINE HEALTH MONITORING SYSTEM

机译:燃气轮机健康综合监测系统

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Gas turbine maintenance is heading towards full condition-based monitoring since the pressure on life cycle cost is ever increasing. Nevertheless, in currently operating machines, a minimum number of measurements is used because of the associated costs and issues of reliability which are linked to any sensor. Therefore, it is an ongoing quest to define an integrated gas turbine health monitoring system which supports the engineers in their difficult task of finding possible faulty modules or engine parts during service. This paper presents a novel health monitoring process approach, dealing simultaneously with single fault events and gradual deteriorations of the gas turbine. The modular buildup of the presented process is capable to use purpose-built algorithms provided by an integrated detection algorithm for an autonomous decision between the deterioration types to analyse the health of a gas turbine. The health monitoring process is also capable of robust fault identification due to measurement losses out of the in-service instrumentation. In that case, decision guidance is provided for the engineer to isolate the most likely faulty component. Integrated information fusion capabilities between thermodynamically and non-thermodynamically measurements (if available) increase the successful fault identification and fault diagnosis. As a design feature for new in-service instrumentations an optimal measurement selection algorithm is capable to vote the needed measurements for a satisfactory health monitoring of a gas turbine. The health monitoring system is designed as a user friendly software package with a graphical user interface. An adaption of the health monitoring system to a given gas turbine is guaranteed through an interface to a thermodynamic model of the monitored gas turbine.
机译:由于生命周期成本的压力不断增加,燃气轮机的维护正朝着基于状态的全面监控的方向发展。然而,由于与任何传感器相关联的相关成本和可靠性问题,在当前运行的机器中,使用最少数量的测量。因此,一直在寻求定义一种集成的燃气轮机健康监测系统,以支持工程师完成在维修过程中发现可能的故障模块或发动机零件的艰巨任务。本文提出了一种新颖的健康监控过程方法,可同时处理单个故障事件和燃气轮机的逐渐损坏。所提出的过程的模块化构建能够使用由集成检测算法提供的专门构建的算法,以在劣化类型之间进行自主决策,从而分析燃气轮机的运行状况。运行状况监控过程还能够可靠地识别由于使用中的仪器带来的测量损失而导致的故障。在这种情况下,将为工程师提供决策指导,以隔离最可能的故障组件。热力学和非热力学测量之间的集成信息融合功能(如果可用)可提高成功的故障识别和故障诊断能力。作为新的在役仪器的设计功能,最佳的测量选择算法能够对燃气轮机的令人满意的健康状况监测所需的测量进行投票。健康监控系统被设计为具有图形用户界面的用户友好软件包。通过与所监测的燃气轮机的热力学模型的接口,可以保证健康监控系统与给定的燃气轮机相匹配。

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