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Estimation of the power electronic converter lifetime in fully rated converter wind turbine for onshore and offshore wind farms

机译:陆上和海上风电场完全额定转换器风力涡轮机中功率电子转换器寿命的估算

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摘要

A comparison has been made of the converter lifetime for a 3MW fully rated converter horizontal axis wind turbine located onshore and offshore. Simulated torque and speed of the turbine shaft were used to calculate voltage and current time series, that was used to calculate the junction temperatures of the diode and IGBT in the generator-side converter by a thermal-electrical model. A rainflow counting algorithm was applied to the junction temperature in combination with an empirical model of the lifetime estimation, to calculate the lifetime of the power electronic modules in the turbine. The number of parallel modules for each location to achieve 20 years life time has also been found. Simulations show the lifetime consumption rate of the diode and IGBT is decreased exponentially by increasing number of parallel modules, lowering the average temperature. The offshore wind turbine has a higher lifetime consumption rate, requiring a slightly higher converter rating to achieve a 20-year lifetime, but this difference is small, and both turbines will use the same number of modules.
机译:对陆上和海上3MW全额定转炉水平轴风力发电机的转炉寿命进行了比较。涡轮轴的模拟扭矩和转速用于计算电压和电流时间序列,并通过热电模型计算发电机侧变流器中二极管和IGBT的结温。结合节点寿命估算的经验模型,将雨水流量计算算法应用于结点温度,以计算涡轮机中功率电子模块的寿命。还发现了每个位置实现20年使用寿命的并行模块的数量。仿真表明,通过增加并联模块数量,降低平均温度,二极管和IGBT的寿命消耗率呈指数下降。海上风力涡轮机具有更高的使用寿命消耗率,需要稍高的变流器额定值才能达到20年的使用寿命,但是这种差异很小,并且两台涡轮机将使用相同数量的模块。

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