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A modified DC chopper for limiting the fault current and controlling the DC link voltage to enhance ride-through capability of doubly-fed induction generator based wind turbine

机译:一种改进的直流斩波器,用于限制故障电流并控制直流母线电压,以增强基于双馈感应发电机的风力发电机的穿越能力

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According to the grid code requirements, doubly-fed induction generator (DFIG) based wind turbines should remain connected to gird during fault conditions for specific time frame depending voltage sag level. A simple DC chopper is employed in DC-link to protect the DFIG from over-voltage; however it is not capable to keep high transient over-currents in an acceptable level in stator side and rotor side of the DFIG. Therefore, an effective current limiting strategy should be incorporated with the DC chopper to improve fault ride-through (FRT) capability of the DFIG. In this paper, a modified DC-link chopper is proposed to keep both the DC-link voltage and the high current level in stator and rotor sides in a permissible level without incorporating any extra fault current limiting strategy. Unlike the general DC chopper configuration, in the proposed DC chopper, it is not required to cease rotor side converter (RSC) switching and employ high rated current antiparallel diodes. The proposed modified DC chopper is placed between the DC-link capacitor and the RSC. In the proposed switching strategy, three extra semiconductor switches are included, which are trigged to insert DC chopper resistance either in parallel or series connections with the DC-link. To prove effectiveness and robustness of the proposed modified DC-link chopper, symmetrical and asymmetrical faults are applied in a power system containing DFIG based wind turbine modelled in PSCAD/EMTDC software. The results are promising in terms of both limiting the fault current and controlling the DC-link voltage of the DFIG.
机译:根据电网规范要求,基于双馈感应发电机(DFIG)的风力涡轮机在故障情况下应在特定时间范围内保持与电网的连接,具体取决于电压跌落水平。 DC链路中使用了一个简单的直流斩波器,以保护DFIG免受过压的影响。但是,它不能在DFIG的定子侧和转子侧将高瞬态过电流保持在可接受的水平。因此,应将有效的电流限制策略与直流斩波器结合使用,以提高DFIG的故障穿越(FRT)能力。在本文中,提出了一种改进的直流母线斩波器,以使直流母线电压和定子和转子侧的高电流水平都保持在允许的水平,而无需结合任何额外的故障电流限制策略。与一般的直流斩波器配置不同,在建议的直流斩波器中,不需要停止转子侧转换器(RSC)的开关并使用高额定电流的反并联二极管。提出的改进型直流斩波器放置在直流链路电容器和RSC之间。在建议的开关策略中,包括了三个额外的半导体开关,这些开关被触发以插入与直流母线并联或串联的直流斩波电阻。为了证明所提出的改进型直流母线斩波器的有效性和鲁棒性,对称故障和非对称故障被应用于包含以PSCAD / EMTDC软件建模的基于DFIG的风力涡轮机的电力系统中。就限制故障电流和控制DFIG的直流母线电压而言,该结果是有希望的。

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