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A Decentralized Control Strategy Based on V-I Droop for Enhancing Dynamics of Autonomous Hybrid AC/DC Microgrids

机译:基于V-I垂直的分散控制策略,用于增强自主混合AC / DC微电网的动态

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摘要

This article presents a GPS-based decentralized control strategy for hybrid ac/dc microgrids. The proposed method uses V-I droop characteristics for the distributed energy resources (DERs) in each of ac and dc subgrids. In particular, the output voltage of each DER is adjusted as a piecewise linear function of the per-unit (pu) output current. In addition, a droop control method is proposed for the interlink converter (IC) to attain global power sharing among the dc and ac DERs. The IC controller changes the deviation of the ac bus voltage as a function of the deviation of the dc bus voltage. This way, the power flow between ac and dc subgrids is adjusted such that the ac and dc DERs experience the same pu voltage deviation and hence deliver the same pu current and active power. In contrast with the existing control approaches, the proposed method does not require frequency or power calculations but directly uses voltage and current measurements in the control loops. So the delay associated with the feedback signals is minimized, which avails accurate load sharing during transients. Experimental results show the proposed method eliminates the transient overshoots of DERs' output powers by offering a fast and overdamped dynamic response.
机译:本文提出了一种基于GPS的混合AC / DC微电网的分散控制策略。所提出的方法使用AC和DC子耕地中的每一个中的分布式能源(DER)的V-i下垂特性。特别地,每个DER的输出电压被调整为每单位(PU)输出电流的分段线性函数。此外,提出了用于互连转换器(IC)的下垂控制方法,以获得DC和AC DER之间的全局功率共享。 IC控制器根据直流母线电压的偏差而改变交流母线电压的偏差。通过这种方式,调整AC和DC子级之间的功率流,使得AC和DC DES经历相同的PU电压偏差,因此提供相同的PU电流和有效功率。与现有的控制方法相比,所提出的方法不需要频率或功率计算,而是直接使用控制回路中的电压和电流测量。因此,与反馈信号相关联的延迟被最小化,这在瞬态期间可用于准确的负载共享。实验结果表明,所提出的方法通过提供快速和过度透过的动态响应,消除了DERS输出功率的瞬态过冲。

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