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Robust Control for PMBLDCG Based WEC System and Seamless Grid Synchronization

机译:基于PMBLDCG的WEC系统和无缝电网同步的鲁棒控制

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A three phase three wire based microgrid (MG) consisting of permanent magnet brushless DC generator (PMBLDC) based wind energy conversion system (WECS) is demonstrated in this paper. This paper presents the performance enhancement of a non conventional energy system (NCE) based microgrid for the seamless grid synchronization. This paper presents dynamic controls for grid connected and islanded modes of operation. For grid connected mode (GCM), a quadrature third order generalized integrator and frequency locked loop and multilayer harmonic decoupling network (QTOGI-FLL-MHDN) based control algorithm is used. The problems like voltage imbalance, DC offset, swell/sag, fluctuation in power produced by WECS, are successfully taken care by QTOGI-FLL-MHDN. The quadrature component of load fundamental is extracted with QTOGI-FLL-MHDN. For standalone mode (SAM), a resonant and proportional resonant (R+PR) control is presented. For the synchronization technique to perfectly track the phase and frequency, a dual TOGI (DTOGI) is combining with the phase locked loop (PLL). This improves the system response under frequency deviation. During frequency variation, it effectively follows the voltages of the grid and the load and it is adjustable to different conditions of grid. Total harmonic distortions (THDs) of are in the boundaries of the IEEE-519 standard.
机译:本文证明了由基于永磁无刷直流发电机(PMBLDC)的风能转换系统(WECS)组成的三相三相基微电网(MG)。本文介绍了基于非传统能源系统(NCE)的微电网的性能增强,用于无缝电网同步。本文介绍了网格连接和岛状操作模式的动态控制。对于网格连接模式(GCM),使用了基于正交的三阶广义集成器和频率锁定环路和多层谐波解耦网络(QTogi-FLL-MHDN)的控制算法。 QTogi-FLL-MHDN成功地处理了电压不平衡,DC偏移,膨胀/下垂,由WEC产生的电力波动的问题。负载基波的正交分量用QTogi-FLL-MHDN提取。对于独立模式(SAM),提出了谐振和比例谐振(R + PR)控制。对于完全跟踪相位和频率的同步技术,双ToGi(Dtogi)与锁相环(PLL)组合。这改善了频率偏差下的系统响应。在频率变化期间,它有效地遵循电网的电压和负载,并且它可调节到不同的网格条件。在IEEE-519标准的界限中的总谐波扭曲(THD)。

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