直流微电网电力共享与电压恢复的分布式主次控制策略

Raj Aryan, R. Ranjan, Amritesh Kumar
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引用次数: 1

摘要

由于直流电(DC)相对于交流电(AC)具有各种优点,包括降低损耗和与分布式能源(DERs)的平滑集成,直流微电网(DC MGs)越来越受到人们的关注。在这种多源直流电源中,存在大量的电压支持和适当的功率共享是主要问题。本文讨论了直流微电网中并联的两个DC - DC升压变换器之间的功率共享或电流共享精度问题。本文采用直流母线的一次和二次控制策略,以保证所有变流器之间良好的功率共享精度和公共直流母线的电压恢复。在一次控制下,传统的下垂方法的主要缺点是功率共享精度差,并且由于下垂作用导致直流母线电压下降。提出的平均电流和平均电压二次控制策略提高了电流共享精度和普通直流母线电压恢复。仿真结果和实验分析均得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Primary and Secondary Control Strategy for Power Sharing and Voltage Restoration in a DC Microgrid
Because of having various advantages of direct current (DC) over alternating current (AC) including reduced losses and smooth integration with distributed energy sources (DERs), DC microgrids (DC MGs) increases more attention nowadays. The presence of a large number of DERs voltage support and proper power-sharing is the major problem in such a multisource DC MG. This paper discusses the problem associated with the power-sharing or current sharing accuracy between two parallely connected dc-dc boost converters in a DC microgrid. In this paper, primary and secondary control strategies for DC MGs are applied to provide good power-sharing accuracy among all converters and voltage restoration of the common DC bus. The main drawback of the conventional droop method under primary control is poor power sharing accuracy and drop in voltage of a common dc bus voltage because of droop action. The proposed average current and average voltage secondary control strategy improve the current sharing accuracy and common dc bus voltage restoration. The simulation results and experimental analysis are validated by using the verified proposed method.
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