双馈感应发电机电压跌落控制

K. Lima, A. Luna, P. Rodríguez, E. Watanabe, R. Teodorescu, F. Blaabjerg
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引用次数: 26

摘要

为提高双馈感应发电机(DFIG)的穿越能力,提出了一种新的控制技术。在这样的发电机中,在耦合点出现严重的电压下降,导致转子/定子绕组的电流过高,这就有必要保护机器以及转子侧的功率转换器。与大多数扩展的解决方案不同的是,通过连接撬棍电路来减少这些电流,这项工作旨在提高DFIG在这种情况下的响应,而无需在系统中引入额外的硬件。为此,提出的控制系统在故障期间反馈定子电流作为转子电流参考,直到它们被驱动到标称值。通过基于PSCAD/EMTDC的数学模型和仿真模型,验证了该方案的可行性。
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Doubly-Fed Induction Generator Control Under Voltage Sags
This paper proposes a new control technique to improve the fault-ride through capability of doubly fed induction generators (DFIG). In such generators the appearance of severe voltage sags at the coupling point make rise to high over currents at the rotor/stator windings, something that makes necessary to protect the machine as well as the rotor side power converter. As a difference with the most extended solution, that reduces these currents by means of the connection of a crowbar circuit, this works intends to enhance the DFIG's response in such conditions without introducing extra hardware in the system. To this end, the proposed control system feedback the stator currents as the rotor current reference during the fault, until they are driven to their nominal values. The feasibility of this proposal has been proven by means of mathematical and simulation models, based on PSCAD/EMTDC.
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