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A simulation study on modified droop control for improved voltage regulation in DC microgrid

机译:改进的下垂控制改善直流微电网电压调节的仿真研究

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In a standalone DC microgrid connected with multiple renewable resources and storage elements, parallel dc-dc converters are more commonly used as interfacing unit between renewable energy sources and load. Current is shared between various power converters which are connected in parallel fashion to maintain a stable DC voltage in the grid. In order to ensure better load sharing in DC microgrid applications, droop control technique is more commonly used. But this control technique cannot ensure a decent level of voltage regulation. In order to address this problem, an improvisation is made in the conventional droop control strategy to obtain a better voltage regulation. This in turn improves the reliability of the system under various conditions. Proposed control technique is simulated and results are provided in this paper.
机译:在连接了多个可再生资源和存储元件的独立DC微电网中,并行DC-DC转换器通常用作可再生能源和负载之间的接口单元。电流在并联连接的各种功率转换器之间共享,以保持电网中稳定的直流电压。为了确保在直流微电网应用中更好的负载分配,下垂控制技术被更普遍地使用。但是这种控制技术不能确保适当的电压调节水平。为了解决这个问题,在常规的下垂控制策略中进行了改进,以获得更好的电压调节。这进而提高了在各种条件下系统的可靠性。对提出的控制技术进行了仿真,并提供了结果。

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