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Active-Damping Virtual Circuit Control for Grid-Tied Converters With Differential-Mode and Common-Mode Output Filters

机译:具有差分模式和共模输出过滤器的电网连接器的主动阻尼虚拟电路控制

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This article presents a virtual circuit control method of designing a resonant-damping discrete-time controller for grid-tied voltage source converters with differential-mode (DM) and common-mode (CM) output filters. The method provides an intuitive way to specify the desired closed-loop behavior by means of a virtual reference circuit rather than abstract mathematical criteria such as closed-loop poles and weighting matrices. Therefore, the existing passive filter designs, which cannot be practically implemented due to excessive losses, and the well-established theory of filters can be exploited. The DM grid current and the CM capacitor voltage, which are the primary control objectives, inherit the main properties of their underlying virtual reference circuits, e.g., resonance damping and low-frequency behavior. On this account, to fortify the controller against grid impedance variations, a virtual circuit with a series resistor at the grid side is considered. Accordingly, the CM voltage and DM current controllers can be easily designed based on the low-frequency behavior of virtual circuits. The method can also be straightforwardly equipped with conventional controllers to enhance system performance, such as harmonic compensation. The simulation and experimental results verify the effectiveness of the DM and CM resonant damping and dynamic performance.
机译:本文介绍了一种虚拟电路控制方法,用于设计具有差分模式(DM)和共模(CM)输出滤波器的网格绑定电压源转换器的谐振阻尼离散时间控制器。该方法提供了一种直观的方式来通过虚拟参考电路而不是抽象的数学标准指定所需的闭环行为,例如闭环磁极和加权矩阵。因此,现有的无源滤波器设计,其不能由于过度损耗而实际实现,并且可以利用良好的过滤器理论。 DM网格电流和CM电容器电压,即主要控制目标,继承了其底层虚拟参考电路的主要特性,例如,共振阻尼和低频行为。在此帐户中,要使控制器抵御电网阻抗变化,考虑具有在网格侧的串联电阻的虚拟电路。因此,CM电压和DM电流控制器可以基于虚拟电路的低频行为轻松设计。该方法还可以直接配备有传统控制器以增强系统性能,例如谐波补偿。仿真和实验结果验证了DM和CM谐振阻尼和动态性能的有效性。

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