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An Adaptive Droop Control Method for Interlink Converter in Hybrid AC/DC Microgrids

机译:AC / DC混合微电网中互连变换器的自适应下垂控制方法

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The conventional control scheme of hybrid microgrids (MGs) uses active power-frequency and reactive power-voltage droop control methods to realize proportional active power sharing in ac and dc MGs, respectively. In order to equate the percentage loadings of dc and ac subgrids, the power transfer through the interlink converter is controlled such that the per-unit frequency deviation of ac MG is equated to the per-unit voltage deviation of dc MG. The main drawback of the mentioned strategy is the poor dynamic response caused by the slow dynamics of the conventional droop method as well as the delay associated with frequency measurement in the interlink converter (IC) controller. To enhance the dynamic response, a control scheme based on voltage-current droop characteristics is proposed in this paper. In this method, the d and q axis V-I droop control schemes are adopted for proportional active and reactive power sharing among ac Distributed Energy Resources (DERs), and the dc V-I droop control method is used for coordination of dc DERs. Furthermore, a novel control strategy based on d-axis voltage/dc voltage droop characteristics is proposed for the IC to realize global power sharing with a fast dynamic response. Experimental results are presented to showcase the efficacy of the proposed scheme.
机译:混合微电网(MGs)的常规控制方案使用有功功率-频率和无功功率-电压下降控制方法来分别实现交流和直流MG的比例有功功率分配。为了使dc和ac子电网的负载百分比相等,控制通过互连转换器的功率传输,以使ac MG的单位频率偏差等于dc MG的单位电压偏差。所提到的策略的主要缺点是,由于常规的下垂方法的缓慢动力学以及与互连转换器(IC)控制器中的频率测量相关的延迟,导致动态响应较差。为了增强动态响应,提出了一种基于电压-电流下垂特性的控制方案。在这种方法中,采用d和q轴V-I下垂控制方案来在ac分布式能源(DER)之间按比例分配有功和无功功率,而使用dc V-I下垂控制方法来协调dc DER。此外,针对IC提出了一种基于d轴电压/直流电压下降特性的新型控制策略,以实现具有快速动态响应的全局功率共享。提出实验结果以展示所提出的方案的功效。

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