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Adaptive Synchronization of Grid-Connected Three-phase Inverters by Using Virtual Oscillator Control

机译:使用虚拟振荡器控制,网格连接的三相逆变器的自适应同步

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This paper presents an adaptive synchronization for current-controlled grid-connected inverter based on a time-domain virtual oscillator controller (VOC). Inspired by the phenomenon of dynamics of adaptive oscillator under the perturbation effect. Firstly, the fast learning rule of the oscillator frequency is derived in order to make the oscillator evolve to the grid voltage. Thus realizing a phase-locking behavior, but without requiring the use of a dedicated phase-locked loop (PLL). Then, the unit orthogonal components are obtained to generate the current reference, and a current loop is designed by using a PR controller in the αβ frame. Experimental results were obtained with comparison to PI current controller, showing the salient performances of the proposed method in front of grid frequency variations, voltage sags and swells.
机译:本文介绍了基于时域虚拟振荡器控制器(VOC)的电流控制的网格连接逆变器的自适应同步。受扰动效应下自适应振荡器动态现象的启发。首先,导出振荡器频率的快速学习规则,以使振荡器发展到电网电压。从而实现锁相行为,但是不需要使用专用锁相环(PLL)。然后,获得单元正交分量以产生电流参考,并且通过在Aβ帧中使用PR控制器来设计电流回路。与PI电流控制器相比,获得了实验结果,显示了网格频率变化前面的所提出的方法的显着性能,电压凹陷和膨胀。

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