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An integrated framework for reliability prediction and condition-based maintenance policy for a hydropower generation unit using GPHM and SMDP

机译:基于GPHM和SMDP的水力发电机组可靠性预测和基于状态的维护策略的集成框架

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? 2023 Elsevier LtdCondition-based maintenance (CBM) of hydropower generation unit (HPGU) is of great significance for the intelligent operation and maintenance of hydropower station. The accurate reliability assessment of equipment is the foundation of the maintenance. However, there has not yet been a thorough study of an integrated theoretical framework for CBM of HPGU based on reliability assessment. Here, we propose a theoretical framework integrates generalized proportional hazard model and semi-Markov decision process to balance reliability prediction and optimization. Firstly, the method described the impact of covariates, which was determined by the operating conditions, on equipment hazard rates during maintenance events. Secondly, the unit reliability was fitted through maximum likelihood estimation and used as one-step transition probability between the states in SMDP. Then, the cost and maintenance epoch within the framework were optimized by the discount criterion and utilized to finish the feedback of the maintenance threshold. Ultimately, the effectiveness of the method was verified by comparing with the average time cost model through actual cases, the results avoided an operating cost of 87.2 $/d and a maintenance cycle error of 15 days, respectively. Besides, the performance of the model under variable operating conditions was discussed, further enhancing the completeness of the framework.
机译:?2023 Elsevier Ltd水力发电机组(HPGU)状态检修(CBM)对水电站智能化运维具有重要意义。对设备的准确可靠性评估是维护的基础。然而,目前尚未对基于可靠性评估的HPGU煤层气综合理论框架进行深入研究。在此,提出了一种融合广义比例风险模型和半马尔可夫决策过程的理论框架,以平衡可靠性预测和优化。首先,该方法描述了由操作条件决定的协变量对维护事件期间设备危险率的影响。其次,通过最大似然估计拟合单元可靠性,并将其用作SMDP中状态之间的一步跃迁概率;然后,利用贴现准则对框架内的成本和维护周期进行优化,并利用该周期完成维护阈值的反馈;最终,通过实际案例与平均时间成本模型进行对比,验证了该方法的有效性,结果分别避免了87.2 $/d的运营成本和15 d的维护周期误差。此外,还讨论了模型在可变工况下的性能,进一步增强了框架的完整性。

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