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A simulation study of proportional resonant controller based on the implementation of frequency-adaptive virtual flux estimation with the LCL filter

机译:基于LCL滤波器的频率自适应虚拟流量估计的比例谐振控制器仿真研究

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摘要

This paper discusses the implementation of proportional resonant (PR) current controllers for a Voltage Source Converter (VSC) with LCL filter which is synchronized to the grid by virtual flux (VF) estimation with inherent sequence separation. Even though there is an extensive amount of literature and studies on the PR current controller for tracking the current reference of a VSC in the stationary reference frame, there is no discussion taking into account voltage sensor-less operation based on virtual flux estimation with an LCL-filter. Separate estimation of the positive and negative sequence virtual flux components at the grid-side of the LCL-filter, as well as current sequence separation, using the Second Order Generalized Integrator-Frequency Locked Loop (SOGI-FLL) is presented as part of a proposed method. The LCL filter is characterized in order to reduce the parameter deviation that might affect the virtual flux estimation. The stability of the proposed method is analyzed in the frequency domain while the operation and performance of the proposed system is verified by simulation studies.
机译:本文讨论了具有LCL滤波器的电压源转换器(VSC)的比例谐振(PR)电流控制器的实现,该电压源转换器通过虚拟磁通(VF)估计和固有序列分离与电网同步。即使有大量文献和有关PR电流控制器的文献和研究来跟踪固定参考系中VSC的电流参考,也没有讨论考虑基于基于LCL的虚拟磁通估算的无电压传感器操作-过滤。作为第二部分的一部分,介绍了使用二阶广义积分器-频率锁定环(SOGI-FLL)对LCL滤波器的电网侧的正序和负序虚拟通量分量以及电流序列分离进行单独估计。建议的方法。 LCL滤波器的特征在于减少可能影响虚拟通量估计的参数偏差。在频域上分析了所提方法的稳定性,并通过仿真研究验证了所提系统的运行和性能。

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