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Structural reliability methods for wind power converter system component reliability assessment

机译:风电变流器系统组件可靠性评估的结构可靠性方法

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Wind power converter systems are essential subsystems in both off-shore and onshore wind turbines. It is the main interface between generator and grid connection. This system is affected by numerous stresses where the main contributors might be defined as vibration and temperature loadings. The temperature variations induce time-varying stresses and thereby fatigue loads. A probabilistic model is used to model fatigue failure for an electrical component in the power converter system. This model is based on a linear damage accumulation and physics of failure approaches, where a failure criterion is defined by the threshold model. The attention is focused on crack propagation in solder joints of electrical components due to the temperature loadings. Structural Reliability approaches are used to incorporate model, physical and statistical uncertainties. Reliability estimation by means of structural reliability methods and simulation are implemented for the power converter system and results are compared. Based on an illustrative example, it is shown that structural reliability methods are appropriate techniques to use for further convertor system reliability estimation studies.
机译:风力发电转换器系统是海上和陆地风力涡轮机中必不可少的子系统。它是发电机与电网连接之间的主要接口。该系统受到众多应力的影响,在这些应力中,主要的影响因素可以定义为振动和温度载荷。温度变化会引起随时间变化的应力,从而引起疲劳载荷。概率模型用于对功率转换器系统中电子组件的疲劳失效进行建模。该模型基于线性损伤累积和故障方法的物理原理,其中故障标准由阈值模型定义。注意力集中在由于温度负荷引起的电子元件焊点中的裂纹扩展上。结构可靠性方法用于合并模型,物理和统计不确定性。通过结构可靠性方法对可靠性进行估算,并对功率变换器系统进行了仿真,并对结果进行了比较。基于说明性示例,表明结构可靠性方法是用于进一步的转换器系统可靠性估计研究的适当技术。

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