首页> 外文期刊>International Journal of Reliability, Quality and Safety Engineering >Integrated Prognosis for Wind Turbine Gearbox Condition-Based Maintenance Considering Time-Varying Load and Crack Initiation Time Uncertainty
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Integrated Prognosis for Wind Turbine Gearbox Condition-Based Maintenance Considering Time-Varying Load and Crack Initiation Time Uncertainty

机译:考虑时变负荷和裂纹启动时间不确定,基于风力涡轮机齿轮箱状况的维护综合预后

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摘要

Maintenance management in wind energy industry has great impact on the overall wind power cost. Maintenance services are either supported by wind turbine manufacturers within warranty period, or managed by wind farm owners. With condition-based maintenance (CBM) strategy, maintenance activities are scheduled based on the predicted health conditions of wind turbine components, and accurate prognostics methods are critical for effective CBM. The reported studies on integrated health prognostics considered the uncertainty in crack initiation time (CIT) uncertainty, but did not incorporate time-varying loading conditions, which could also have a significant impact on future health condition and remaining useful life (RUL) prediction. Constant loads were generally used to approximate the actual time-varying loading conditions. In this paper, an integrated prognostics method is proposed for wind turbine gearboxes considering both time-varying loading conditions and CIT uncertainty. As new condition monitoring observations are available, the distributions of both material model parameter and CIT are updated via Bayesian inference, and the failure time prediction is updated accordingly. An example is provided to demonstrate that the proposed time-varying load approach presents more benefits considering the uncertainty of CIT, with significant accuracy improvement comparing to the constant-load approach.
机译:风能产业的维护管理对整体风力成本产生了很大影响。维护服务要么由风力涡轮机制造商提供保修期内,或由风电场所有者管理。根据基于条件的维护(CBM)策略,根据风力涡轮机组件的预测健康状况安排维护活动,准确的预后方法对于有效的CBM至关重要。报告的关于综合健康预测的研究被认为是裂缝启动时间(CIT)不确定性的不确定性,但未纳入时变的加载条件,这也可能对未来的健康状况和剩余的使用寿命(RUL)预测产生重大影响。恒定载荷通常用于近似实际的时变负载条件。本文提出了一种考虑到时变负载条件和CIT不确定性的风力涡轮机齿轮箱的集成预测方法。随着新的状态监测观测可用,材料模型参数和CIT的分布通过贝叶斯推断更新,并且相应地更新故障时间预测。提供了一个示例以证明所提出的时变负载方法呈现了考虑CIT的不确定性的更多好处,与恒定负载方法相比,具有显着的准确性改进。

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