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Comparative Study of Droop Control Methods for AC Islanded Microgrids

机译:AC岛微电网下垂控制方法的比较研究

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This paper presents a comparative study of two Droop-Based Control (DBC) schemes that have a hierarchical structure to manage power sharing among distributed generations (DGs) in AC islanded microgrids (MGs). DBC schemes are designed based on assumptions regarding feeder lines impedances that limit the design utility. In this comparative study, a control scheme is designed based on a purely inductive feeder lines assumption. The first control scheme consists of three combined controls: (1) a conventional (P/f and Q/V) Droop control, (2) a negative phase sequence virtual impedance control, and (3) an unbalanced power and small signal frequency droop control. A second control scheme is also designed based on a purely resistive feeder line assumption. This control consists of (1) a P/V and Q/$delta$ droop control, also known as Inverse Angle Droop control, and (2) a virtual resistive output impedance control. This research examines the impact of both the feeder line model and the effects of unbalanced loads on power sharing in the islanded MGs.
机译:本文介绍了对基于下垂的控制(DBC)方案的比较研究,该方案​​具有分层结构,以管理AC岛状微电网(MGS)中的分布式代代(DGS)之间的权力共享。 DBC方案是根据关于馈线限制设计实用程序的馈线阻抗的假设而设计的。在该比较研究中,基于纯电感馈线的假设设计了一种控制方案。第一控制方案由三个组合控制组成:(1)传统(P / F和Q / V)下垂控制,(2)负相位序列虚拟阻抗控制,(3)不平衡电源和小信号频率下垂控制。还基于纯电阻馈线假设设计了第二控制方案。该控件由(1)为P / V和Q / $ Delta $ Droop控制,也称为逆角下垂控制,以及(2)虚拟电阻输出阻抗控制。本研究审查了馈线线模型的影响和不平衡负荷对岛MGS中电力共享的影响。

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