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Doubly-fed-machines in wind-turbine systems: is this application limiting the lifetime of IGBT-frequency-converters?

机译:风力涡轮机中的双馈电机:这种应用是否限制了IGBT变频器的使用寿命?

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Recently wind turbines are built at power levels above 1.5 MW. Higher power levels are anticipated for offshore applications. To limit mechanical stresses and power surges in these high-power systems speed-control is necessary. The doubly-fed induction generator (DFIG) system, used like a synchronous generator, is a viable alternative to adjust speed over a wide range while keeping the cost of the power converter minimal. A four-quadrant IGBT AC-to-AC converter is used to feed power bi-directionally to the rotor. However, with respect to reliability the power converter turns out to be the weakest link of the whole system. Contradictory to traction applications very few measurements of the real stresses in wind turbines have been done up to now. This paper describes how the DFlG-system causes very low output frequencies at full load-current. The corresponding IGBT-Chip temperature is simulated using Flomerics "Flotherm" FEM-program and verified at the test-bench. Long-term testings with three different converters have been performed and the results are presented.
机译:近来,风力涡轮机以高于1.5MW的功率水平建造。预计海上应用将具有更高的功率水平。为了限制这些大功率系统中的机械应力和电涌,必须进行速度控制。与同步发电机一样使用的双馈感应发电机(DFIG)系统是一种可行的替代方案,可在较宽的范围内调节速度,同时保持功率转换器的成本最小。四象限IGBT AC-AC转换器用于双向向转子供电。但是,就可靠性而言,功率转换器被证明是整个系统中最薄弱的环节。与牵引力应用相反,到目前为止,很少对风力涡轮机中的实际应力进行测量。本文介绍了DFlG系统如何在满负载电流下导致极低的输出频率。使用Flomerics“ Flotherm” FEM程序模拟了相应的IGBT芯片温度,并在测试台上进行了验证。已经使用三种不同的转换器进行了长期测试,并给出了结果。

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