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Study of Impacts of Two Types' Distributed Generation on Distribution Network Voltage Sags

机译:两种类型的分布式发电对配电网电压暂降的影响研究

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Distributed Generation (DG) has impacts on the performance of connected distribution network. DG is usually not requested to participate in voltage regulation of the distribution network and will be disconnected from the distribution network quickly enough when a fault occurs in it for eliminating DG's negative influence. But in this way it will also limit the capability of DG to suppress the voltage sag of distribution network in faulty condition. In this paper, two typical DG models, i.e. synchronous generator and VSC-type inverter based DG models, are established focusing on the different effect on voltage sag in different scenarios with different models, fault locations, control modes and reactive power reserves etc. It is concluded that synchronous generator based DG has low effect on suppressing the voltage sag, while VSC-type inverter based DG has certain capability of suppressing voltage sag, depending on factors such as control strategies, reactive power reserve and fault locations etc.
机译:分布式发电(DG)对连接的配电网络的性能有影响。通常不要求DG参与配电网络的电压调节,当发生故障时,DG将足够快地与配电网络断开连接,以消除DG的负面影响。但是这种方式也将限制DG在故障情况下抑制配电网电压骤降的能力。本文建立了两种典型的DG模型,即同步发电机和基于VSC型逆变器的DG模型,着眼于在不同情况下具有不同模型,故障位置,控制模式和无功功率等对电压骤降的不同影响。结论是,基于同步发电机的DG对电压暂降的抑制作用很小,而基于VSC型逆变器的DG具有一定的抑制电压暂降的能力,具体取决于控制策略,无功储备和故障位置等因素。

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