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Voltage Source Active Damper Applied to Resonance Suppression of Multi-inverter Grid-connected

机译:电压源有源阻尼器在多逆变器并网谐振抑制中的应用

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Multi-inverter grid-connected systems are usually in the weak grid environment where the grid impedance changes greatly, which results in a strong coupling between the inverter and the grid impedance in the grid-connected power generation system, causing the resonance problem. A lot of researches have been conducted on current source active damper, but it is difficult to achieve a small virtual harmonic impedance. So its ability to suppress resonance in grid-connected systems is limited. Regarding the issues above, this article presents a control strategy for a voltage source active damper. The voltage source active damper can virtualize the smaller harmonic impedance to reshape the impedance of the point of common coupling, which effectively suppresses the harmonic and resonance of the system from the system level Finally, taking dual-inverter system as an example, the resonance suppression effect is theoretically analyzed, and the feasibility and effectiveness of the proposed voltage source active damper control method are verified through experiments.
机译:多逆变器并网系统通常处于电网阻抗变化很大的弱电网环境中,这导致逆变器与并网发电系统中的电网阻抗之间的强耦合,从而引起谐振问题。关于电流源有源阻尼器已经进行了许多研究,但是很难获得小的虚拟谐波阻抗。因此,其抑制并网系统共振的能力受到限制。关于上述问题,本文提出了一种电压源有源阻尼器的控制策略。电压源有源阻尼器可以虚拟化较小的谐波阻抗,以重塑公共耦合点的阻抗,从而有效地从系统水平抑制系统的谐波和谐振。最后,以双逆变器系统为例,进行谐振抑制。从理论上分析了其效果,并通过实验验证了所提出的电压源主动阻尼器控制方法的可行性和有效性。

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