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Low-voltage ride-through of PM synchronous wind generator under asymmetrical voltage sags with constant power

机译:恒功率不对称电压骤降下永磁同步风力发电机的低压穿越

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As the wind energy generation becomes more frequently employed worldwide, specific grid codes concerning power quality are required for these systems. Several countries have determined that the wind turbines cannot be disconnected from the grid during voltage sags, depending on the severity of the sags. This has pushed manufacturers to implement low-voltage-ride-through strategies in their turbines. Some grid codes not only demand that the turbine remain connected but also that it must provide active or reactive power in order to aid the recovery from the fault. This paper presents a strategy of low-voltage-ride-through that uses resonant controllers in the synchronous reference frame in order to withstand unbalanced voltage sags in a permanent magnet synchronous machine topology with full-scale power converter. It presents also the current references calculation so that the output active or reactive power can be controlled with oscillations. Simulation results are shown to demonstrate the strategy.
机译:随着风能发电在世界范围内越来越普遍地使用,这些系统需要有关电能质量的特定电网法规。多个国家/地区已确定,在电压骤降期间无法将风力涡轮机与电网断开,具体取决于电压骤降的严重程度。这促使制造商在其涡轮机中实施低电压穿越策略。一些电网法规不仅要求涡轮机保持连接状态,而且还必须提供有功或无功功率,以帮助从故障中恢复。本文提出了一种低电压穿越的策略,该策略在同步参考系中使用谐振控制器,以承受具有满量程功率转换器的永磁同步电机拓扑中的不平衡电压突降。它还提供了电流参考计算,因此可以通过振荡来控制输出有功功率或无功功率。仿真结果表明了该策略。

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