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A dynamic programming-based maintenance model of offshore wind turbine considering logistic delay and weather condition

机译:考虑物流延迟及天气条件的海上风力涡轮机的动态规划维护模型

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摘要

There are several challenges toward maintaining offshore wind turbines such as ensuring the intrinsic performance of the wind turbine, maximizing short- and long-term profits, and optimizing maintenance grouping. These criteria should be optimized in respect to several practical constraints. Moreover, issues such as decision-making in uncertain environments where reliability-oriented field data are insufficient and information regarding the state of health state also be tackled.This paper proposes a failure model that includes multiple failure modes with different failure consequences. Logistic delays and weather conditions are also obstacles for performing maintenance activities. To save logistic cost and downtime loss, a two-level maintenance policy considering both periodic maintenance planning and reactive maintenance is developed. The first level is aimed at failure modes whose degradation process is black-box by grouping individual maintenance activities according to their own maintenance period. The second level is aimed at those failure modes whose failure can be indicated through two options: 1) Integration with existing maintenance tasks of the first level and 2) creating a new maintenance opportunity. The effects of decision thresholds on the choice of maintenance options are studied through simulations.
机译:保持近海风力涡轮机的挑战,例如确保风力涡轮机的内在性能,最大化短期和长期利润,以及优化维护分组。应在几种实际限制的情况下优化这些标准。此外,在可靠性导向的现场数据不足的不确定环境中的决策等问题也被解决了有关健康状态的信息。本文提出了一种故障模型,包括具有不同失败后果的多种故障模式。物流延迟和天气条件也是执行维护活动的障碍。为了节省逻辑成本和停机损失,考虑定期维护规划和无功维护的两级维护策略。第一级别旨在通过根据自己的维护期间分组各个维护活动,劣化过程是黑盒的失败模式。第二个级别的目标是通过两个选项所示的失败模式:1)与第一级的现有维护任务集成,2)创建新的维护机会。通过仿真研究了决策阈值对维护选项选择的影​​响。

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