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Comparison of power electronics lifetime between vertical- and horizontal-axis wind turbines

机译:垂直和水平轴风力发电机之间的电力电子设备寿命比较

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摘要

A comparison has been made of the power electronics lifetime for 5MW horizontal- and vertical-axis wind turbines, based on dynamic models supplied with generated wind speed time series. Both two- and three-bladed stall-regulated H-rotor vertical-axis turbines were modelled, with several different control parameters. Vertical-axis turbines are likely to lead to a shorter power electronics lifetime as the aerodynamic torque varies with rotor azimuth, leading to a cyclic generator torque, and increased thermal cycling in the power electronics. An electro-thermal model of a low-voltage converter was created, and used to calculate the switching device temperatures based on the generator torque and speed time series from the turbine model. An empirical lifetime model and rainflow-counting algorithm were used to calculate the lifetime, and this was repeated at different average wind speeds to determine the overall lifetime. The vertical-axis turbine was found to have a lower power electronics lifetime than the horizontal-axis, or require a larger number of parallel switching devices to achieve the same lifetime, although this was lessened by running the turbine with a more relaxed speed control, allowing the rotor inertia to partially absorb the aerodynamic torque ripple.
机译:根据生成的风速时间序列提供的动态模型,对5MW水平轴和垂直轴风力发电机的电力电子设备寿命进行了比较。对两叶片和三叶片失速调节的H转子垂直轴涡轮机进行了建模,具有几个不同的控制参数。垂直轴涡轮机可能会缩短电力电子设备的使用寿命,因为空气动力学扭矩会随转子的方位角变化,从而导致发电机扭矩循环,并增加电力电子设备的热循环。创建了低压转换器的电热模型,并将其用于根据涡轮模型中的发电机转矩和速度时间序列来计算开关设备的温度。使用经验寿命模型和雨流计数算法来计算寿命,然后在不同的平均风速下重复此过程以确定总寿命。发现垂直轴涡轮机具有比水平轴更低的电力电子设备寿命,或者需要更多数量的并联开关设备来达到相同的寿命,尽管通过在更宽松的速度控制下运行涡轮机可以减少这种情况,允许转子惯性部分吸收空气动力转矩波动。

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