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Petri Net Model and Reliability Evaluation for Wind Turbine Hydraulic Variable Pitch Systems

机译:风力机变桨系统的Petri网模型和可靠性评估

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Based on an analysis of the working principles of the hydraulic variable pitch system of a wind turbine, a novel Petri net model and reliability evaluation method are proposed. First, Petri net theory is adopted to build a model for each discrete state of the operation of the hydraulic pitch system of the wind turbine and at the same time a fault Petri net model is established. Then through qualitative analysis and quantitative calculations based on the fault Petri net, the system reliability indexes are obtained. During the qualitative analysis process, in order to more conveniently find the minimal cut sets of the fault Petri net, a Visual C++ 6.0-based algorithm is compiled and the minimal cut sets are tested correctly with another method. During the quantitative calculation process, the fault probability has been obtained from the equations according to the fault probability of libraries and transitions between different states. Not only does the proposed Petri net describe the structure, function and operation of the hydraulic pitch system with a graphic language, but the fault Petri net model can also clearly express the logical relations among faults. The novel Petri net model offers simple calculations and the prospect of broad applicability and the new reliability evaluation method provides an important reference for the performance evaluation of these systems.
机译:在分析风机水力变桨系统工作原理的基础上,提出了一种新的Petri网模型和可靠性评估方法。首先,采用Petri网理论为风力涡轮机的液压变桨系统的每个离散运行状态建立模型,同时建立故障Petri网模型。然后基于故障Petri网进行定性分析和定量计算,得出系统可靠性指标。在定性分析过程中,为了更方便地找到故障Petri网的最小割集,编译了基于Visual C ++ 6.0的算法,并使用另一种方法正确测试了最小割集。在定量计算过程中,根据库的故障概率和不同状态之间的转换,从方程中获得了故障概率。提出的Petri网不仅可以用图形语言描述液压变桨系统的结构,功能和操作,而且故障Petri网模型还可以清楚地表达故障之间的逻辑关系。新颖的Petri网模型计算简单,具有广阔的应用前景,而新的可靠性评估方法为这些系统的性能评估提供了重要的参考。

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