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A comparative study of methods for estimating virtual flux at the point of common coupling in grid connected voltage source converters with LCL filter

机译:带有LCL滤波器的并网电压源转换器中公共耦合点的虚拟磁通估算方法的比较研究

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Grid connected Voltage Source Converters (VSCs) with LCL filters usually have voltage measurements at the filter capacitors, while it can be important to control the active or reactive power injection at the grid-side of the LCL filter, for instance at a Point of Common Coupling (PCC). Synchronization to the PCC voltage can be obtained by Virtual Flux (VF) estimation, which can also allow for voltage sensor-less operation of VSCs. This paper is presenting a comparative evaluation of methods for estimating the VF at the PCC, considering a VSC connected to the grid through an LCL filter with a Proportional Resonant (PR) controller as the inner current control loop. The VF estimation is achieved by using frequency adaptive dual SOGI-QSGs (DSOGI-VF). The Frequency Locked Loop (FLL) is used in order to keep the positive and negative sequence (PNS) VF estimation inherently frequency adaptive. Three different methods are considered for obtaining the capacitor current needed for estimating the VF at the grid side of the LCL filter which are based on fully estimation by using the voltage sensor-less method, by estimating the capacitor current from the measured voltage or by using additional capacitor current sensors. The results have been compared and validated by simulation studies.
机译:具有LCL滤波器的并网电压源转换器(VSC)通常在滤波电容器上进行电压测量,而控制LCL滤波器的电网侧(例如在公共点)注入有功或无功功率可能很重要。联轴器(PCC)。可以通过虚拟通量(VF)估计来获得与PCC电压的同步,该估计还可以实现VSC的无电压传感器操作。本文介绍了一种评估PCC上VF的方法的比较评估,考虑了通过LCL滤波器连接到电网的VSC,其中LCL滤波器具有比例谐振(PR)控制器作为内部电流控制环路。通过使用频率自适应双SOGI-QSG(DSOGI-VF)来实现VF估计。锁频环(FLL)用于保持正负序列(PNS)VF估计固有的频率自适应性。考虑了三种不同的方法来获得估算LCL滤波器电网侧VF所需的电容器电流,这三种方法均基于完全估算:使用无电压传感器方法,根据测得的电压估算电容器电流或通过使用附加的电容器电流传感器。结果已通过仿真研究进行了比较和验证。

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