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A Low-pass Filter Method to Suppress the Voltage Variations Caused by Introducing Droop Control in DC Microgrids

机译:一种低通滤波器方法,用于抑制在DC微电普林中引入下垂控制引起的电压变化

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Small-scale DC microgrids have been popular in recent years due to their flexibility and wide applications. Droop control is one of the most widely applied control method in interface converters for a DC microgrid. However, methods to select proper droop coefficients or droop coefficient zones are rarely discussed in reported literatures. This paper analyzes the impact caused by large droop coefficients from loop-gain perspective, and proposes a low pass filer method to avoid the significant DC bus voltage variations, which is harmful to the power quality and voltage-based control strategies. Also, a droop coefficient zone is defined according to the current sharing and DC bus voltage variations. A simulation study has been implemented to validate the proposed droop coefficient zone and feasibility of the proposed low pass filer method.
机译:由于其灵活性和广泛的应用,近年来,小型DC微电网一直受欢迎。 DROPOP控制是DC MicroGrid的接口转换器中最广泛应用的控制方法之一。然而,在报告的文献中很少讨论选择适当的下垂系数或下垂系数区域的方法。本文分析了来自环路增益透视的大型下垂系数造成的影响,提出了低通滤波器方法,以避免显着的直流母线电压变化,这对功率质量和基于电压的控制策略有害。此外,根据电流共享和直流总线电压变化来定义下垂系数区域。已经实施了仿真研究以验证所提出的下垂系数区域和所提出的低通滤波器方法的可行性。

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