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Full-load Converter Connected Asynchronous Generators for MW Class Wind Turbines

机译:适用于MW级风力涡轮机的满载变频器连接的异步发电机

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Wind turbines equipped with full-load converter-connected asynchronous generators are a known concept. These have rating up to hundreds of kW and are a feasible concept for MW class wind turbines and may have advantages when compared to conventional wind turbines with directly connected generators. The concept requires the use of full-scale frequency converters, but the mechanical gearbox is smaller than in conventional wind turbines of the same rating. Application of smaller gearbox may reduce the no-load losses in the wind turbines, which is why such wind turbines with converter connected generators may start operation at a smaller wind speed. Wind turbines equipped with such converted connected asynchronous generators are pitch-controlled and variable-speed. This allows better performance and control. The converter control may be applied to support the grid voltage at short-circuit faults and to improve the fault-ride-through capability of the wind turbines, which makes the concepts relevant for large wind farms. The Danish transmission system operator Energinet-DK has implemented the general model of wind turbines equipped with converter connected asynchronous generators with the simulation tool Powerfactory (DlgSilent). The article presents Energinet-DK's experience of modeling this feasible wind turbine concept.
机译:配备有与满载变频器连接的异步发电机的风力涡轮机是已知的概念。这些具有高达数百千瓦的额定功率,并且对于兆瓦级风力涡轮机是可行的概念,并且与具有直接连接的发电机的常规风力涡轮机相比具有优势。这个概念要求使用全尺寸变频器,但是机械变速箱比相同额定值的传统风力涡轮机要小。较小齿轮箱的应用可以减少风力涡轮机中的空载损失,这就是为什么这种带有转换器连接发电机的风力涡轮机可以在较小风速下开始运行的原因。配备有这种转换连接的异步发电机的风力涡轮机是变桨控制和变速的。这样可以实现更好的性能和控制。变频器控制可用于在短路故障时支持电网电压,并提高风力涡轮机的故障穿越能力,这使该概念与大型风电场相关。丹麦的传输系统运营商Energinet-DK已使用仿真工具Powerfactory(DlgSilent)实现了配备了与变频器相连的异步发电机的风力发电机的通用模型。本文介绍了Energinet-DK对这种可行的风力发电机概念进行建模的经验。

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