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A stabilizer for suppressing harmonic resonance in multi-parallel inverter system

机译:多并联逆变器系统中抑制谐波谐振的稳定器

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In the paper a simple stability-equivalent single- inverter system is proposed to analyze the stability of the complex multi-inverter system. Investigation shows that the harmonic resonance even instabilities will be triggered with the increase of the paralleled inverter quantities or the grid inductance due to the interaction between the inverter admittance and the grid admittance. From the perspective of reshaping the admittance, a stabilizer based on the rectifier is proposed to improve the system stability. To both offset the capacitive characteristics of the inverter admittance and the inductive characteristics of the grid admittance the rectifier connected to the point of the common coupling (PCC) is controlled as a resistive-inductive admittance within the current controller bandwidth. With the equivalent shunt admittance, the phase of the admittance seen by the power grid is much lower than 90° in a wide frequency range, and the phase of the admittance seen by the inverters is much higher than -90° in the vicinity of their intersection frequency which is constrained at the high frequency. After the stabilizer is added the system can keep sufficient phase margins as the grid impedance varies in a wide frequency range. Simulation results have verified the performance of the proposed stabilizer for suppressing the harmonic resonance.
机译:本文提出了一种简单的等效稳定单逆变器系统,以分析复杂的多逆变器系统的稳定性。研究表明,由于逆变器导纳和电网导纳之间的相互作用,随着并联逆变器数量或电网电感的增加,将引发谐波谐振甚至不稳定性。从整形导纳的角度出发,提出了一种基于整流器的稳定器,以提高系统的稳定性。为了抵消逆变器导纳的电容特性和电网导纳的电感特性,将连接到公共耦合点(PCC)的整流器控制为电流控制器带宽内的电阻-电感导纳。使用等效并联导纳,在宽频率范围内,电网看到的导纳相位远低于90°,​​而逆变器附近看到的导纳相位则远高于-90°受高频限制的交叉频率。添加稳定剂后,由于电网阻抗在很宽的频率范围内变化,系统可以保持足够的相位裕量。仿真结果验证了所提出的稳定器抑制谐波谐振的性能。

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