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Fully Distributed Hierarchical Control of Parallel Grid-Supporting Inverters in Islanded AC Microgrids

机译:孤岛式交流微电网中并网逆变器的全分布式分层控制

摘要

In this paper, a fully distributed hierarchical control strategy is proposed for operating networked grid-supporting inverters (GSIs) in islanded AC microgrids (MGs). The primary control level implements frequency and voltage control of an AC MG through a cascaded structure, consisting of a droop control loop, a virtual impedance control loop, a mixed H_2/H_infinity based voltage control loop and a sliding mode control (SMC) based current loop. Compared to conventional proportional plus integral (PI) based cascaded control, the proposed cascaded control doesn't require a precise model for the GFI system. The proposed secondary control level implements distributed consensus based economic automatic generation control (EAGC) and distributed automatic voltage control (AVC), which integrates the conventional secondary control and tertiary control into a single control level by bridging the gap between traditional secondary control and tertiary control. Simulation results demonstrate the effectiveness of the proposed hierarchical control strategy.
机译:本文提出了一种完全分布式的分级控制策略,用于在孤岛式交流微电网(MG)中运行联网的电网支持逆变器(GSI)。主控制级通过级联结构实现AC MG的频率和电压控制,该级联结构包括下垂控制环路,虚拟阻抗控制环路,基于混合H_2 / H_infinity的电压控制环路和基于滑模控制(SMC)的电流环。与基于常规比例加积分(PI)的级联控制相比,所提出的级联控制不需要GFI系统的精确模型。拟议的二级控制级别实现了基于分布式共识的经济自动发电控制(EAGC)和分布式自动电压控制(AVC),它们通过弥合传统二级控制和三级控制之间的差距将常规二级控制和三级控制集成到单个控制级中。仿真结果证明了所提出的分层控制策略的有效性。

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