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首页> 外文期刊>The Journal of Engineering >Hierarchical control of parallel voltage source inverters in AC microgrids
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Hierarchical control of parallel voltage source inverters in AC microgrids

机译:AC微电网中并联电压源逆变器的分层控制

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摘要

Here, a distributed hierarchical control strategy is proposed for the parallel operating of voltage source inverters (VSIs) in AC microgrids (MGs). For the output voltage control of a VSI, conventional double-loop proportional-integral (PI) control method has deteriorative performance under disturbance parameters conditions and has a narrow range of stable operation. Here, the sliding mode control (SMC)-based inner-loop current control (level0) and mixed H2/H-based outer-loop voltage control (level1) are proposed for the output voltage control of a VSI, which combines the advantages of robustness and fast transient response. The droop control (level2) is applied to avoid circulating currents among the VSIs without using any critical communication between them. The multi-agent system (MAS)-based distributed economic automatic generation control (EAGC) and distributed automatic voltage control (AVC) (level3) are proposed to restore the voltage magnitude and frequency deviations caused by droop controller and achieve optimal active power dispatch at the same time.
机译:这里,提出了一种分布式分层控制策略,用于AC微电网(MGS)中的电压源逆变器(VSIS)的并行操作。对于VSI的输出电压控制,传统的双环比例积分(PI)控制方法在干扰参数条件下具有劣化性能,并且具有窄范围的稳定操作。这里,滑动模式控制(SMC)基于内环电流控制(电平)和混合<斜体XMLNS:mml =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> h 2 /<斜体XMLNS:mml =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> h 基于外环电压控制(电平1),提出了VSI的输出电压控制,其结合了鲁棒性和快速瞬态响应的优点。施加下垂控制(电平2)以避免VSI之间的循环电流而不使用它们之间的任何关键通信。提出了基于多智能体系(MAS)的分布式经济自动生成控制(EAGC)和分布式自动电压控制(AVC)(IVC)以恢复由下垂控制器引起的电压和频率偏差,实现最佳的有效功率调度同时。

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