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Analysis and suppression of high-frequency oscillation between converter-based source and loads in an island power system

机译:孤岛电力系统中基于变换器的源与负载之间的高频振荡的分析与抑制

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摘要

In island power system with strong mutual interaction of power electronic devices, stability problems such as high-frequency oscillation are prone to occur. Firstly, a small-signal sequence impedance model of an island power system is built by harmonic linearization method. It is found that the output sequence impedance of the source PWM inverter in the system is not affected by the stable operating point, but the input sequence impedance of the load PWM rectifier will decrease with the increase of power. Then, based on the sequence impedance model and Nyquist stability criterion, the influence of load type and load power on stability of the island power system is analyzed, which can reveal that high-frequency oscillation occurs when the source PWM inverter interacts with the load PWM rectifier. The essential reason of the high-frequency oscillation is that the capacitive output impedance of the source PWM inverter does not match the inductive output impedance of the load PWM rectifier at high-frequency areas. Aiming at this issue, an impedance reconstruction control for the source PWM inverter is proposed, which improves the phase of the output sequence impedance of the source PWM inverter at high-frequency areas to effectively suppress the high-frequency oscillation of the system. Finally, experiment results verify the correctness of analysis and effectiveness of the proposed control strategy.
机译:在电力电子设备之间相互作用强烈的孤岛电力系统中,容易发生诸如高频振荡之类的稳定性问题。首先,通过谐波线性化方法建立了孤岛电力系统的小信号序列阻抗模型。发现系统中源PWM逆变器的输出序列阻抗不受稳定工作点的影响,但负载PWM整流器的输入序列阻抗将随着功率的增加而减小。然后,基于序列阻抗模型和奈奎斯特稳定性判据,分析了负载类型和负载功率对孤岛电力系统稳定性的影响,可以看出当源PWM逆变器与负载PWM相互作用时会发生高频振荡。整流器。高频振荡的根本原因是源PWM逆变器的电容输出阻抗与负载PWM整流器在高频区域的电感输出阻抗不匹配。针对该问题,提出了一种对源PWM逆变器的阻抗重构控制,以改善源PWM逆变器在高频区域的输出顺序阻抗的相位,从而有效地抑制了系统的高频振荡。最后,实验结果验证了所提控制策略分析的正确性和有效性。

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