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Repetitive current control of an interleaved grid-connected inverter

机译:交错式并网逆变器的重复电流控制

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Repetitive control can be effective in improving current quality when used with grid-connected inverters. Mathematically, a repetitive controller is equivalent to a parallel combination of resonant controllers with high gain at the fundamental frequency and its harmonics, and accordingly good disturbance rejection can be achieved at these frequencies. To ensure stability, a low-pass filter needs to be incorporated within the repetitive controller to attenuate the high frequency resonant peaks of the controller gain (above the system's cross-over frequency), without significantly affecting the low frequency resonant peaks corresponding to significant grid harmonics that need to be rejected. The paper therefore argues that it is desirable that the system and the inverter's output filter should have a high bandwidth — higher than the most significant grid harmonics — which may be counter intuitive. The high bandwidth requirement dictates a high PWM switching frequency, which becomes challenging in high power systems as the maximum achievable switching frequency of power electronic devices reduces as their power rating increases. This limitation can be overcome in low voltage systems by using an interleaved inverter topology in which the power is shared between several 2-level half-bridge inverter legs connected in parallel. In addition to using low power devices capable of high switching frequency, the value of the LC output filter capacitance can be relatively very small thanks to the ripple cancellation feature of the interleaved inverter. Both of these features mean that the bandwidth of an interleaved inverter can be much higher than that achievable using a classical 2-level inverter with an LCL output filter. The paper discusses the design and practical implementation of a repetitive controller for an interleaved inverter with 6 half-bridge legs per phase. Simulation and experimental results are also presented to demonstrate the effectiveness of- the proposed controller in improving the THD of the output current of the inverter.
机译:当与并网逆变器一起使用时,重复控制可以有效改善电流质量。在数学上,重复控制器等效于谐振控制器的并联组合,该谐振控制器在基频及其谐波上具有高增益,因此可以在这些频率下实现良好的干扰抑制。为确保稳定性,需要在重复性控制器内并入一个低通滤波器,以衰减控制器增益的高频共振峰(高于系统的交叉频率),而不会明显影响与有效电网相对应的低频共振峰。需要抑制的谐波。因此,本文认为,理想的是,系统和逆变器的输出滤波器应具有较高的带宽(高于最重要的电网谐波),这可能会很直观。高带宽要求决定了高PWM开关频率,这在高功率系统中变得具有挑战性,因为功率电子设备的最大可达到的开关频率随着功率额定值的增加而降低。在低压系统中,可以通过使用交错的逆变器拓扑来克服此限制,在该拓扑中,功率在并联连接的两个2级半桥逆变器桥臂之间共享。除了使用具有高开关频率的低功率器件外,由于交错式逆变器的纹波消除功能,LC输出滤波器电容的值可能相对较小。这两个功能都意味着交错式逆变器的带宽可以比使用带LCL输出滤波器的经典2电平逆变器所能达到的带宽高得多。本文讨论了每相具有6个半桥脚的交错式逆变器重复控制器的设计和实际实现。还给出了仿真和实验结果,以证明所提出的控制器在改善逆变器输出电流的总谐波失真方面的有效性。

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