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A Varying Frequency LPV-Based Control Strategy for Three-Phase Inverters

机译:基于LPV的三相逆变器变频控制策略

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摘要

Grid-connected inverters have drawn a lot of attention in the integration of distributed generation systems and microgrids, as they are an effective interface for renewable and sustainable energy sources. Several strategies, including repetitive and resonant controllers, have been implemented in order to achieve low distortion and high-quality power. However, it has been proved that their performance decreases substantially when the grid frequency varies. This paper proposes a resonant control strategy based on a linear parameter varying (LPV) design, which is able to deal with changes in the network frequency. Controller aim is associated with injecting a clean sinusoidal current to the grid, even in the presence of nonlinear/unbalanced loads and/or grid-voltage distortions. Main emphasis is focused on presenting an applied LPV design procedure that covers plant modeling, controller synthesis, stability analysis, and experimental results that show the feasibility and effectiveness of the proposed scheme.
机译:并网逆变器在分布式发电系统和微电网的集成中引起了很多关注,因为它们是可再生能源和可持续能源的有效接口。为了实现低失真和高品质功率,已经实施了包括重复和谐振控制器在内的几种策略。但是,已经证明,当电网频率变化时,它们的性能会大大降低。本文提出了一种基于线性参数变化(LPV)设计的谐振控制策略,该策略能够处理网络频率的变化。控制器的目标与向电网注入干净的正弦电流相关,即使存在非线性/不平衡负载和/或电网电压失真的情况。主要重点是提出一种应用的LPV设计程序,该程序涵盖了工厂建模,控制器综合,稳定性分析和实验结果,这些结果表明了该方案的可行性和有效性。

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