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Instability of Grid Connected Converter Under Weak AC Grid Conditions

机译:弱交流电网条件下并网逆变器的不稳定性

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Renewable energy sources like wind or hydrogen have been worked as a reliable option to traditional power sources. But for distributed power generation systems (DPGSs), the operation of the grid-connected converter under the weak ac grid condition has been a challenge for the stability and power quality issues. This paper shows the effect of the weak grid on the grid voltage-controlled inverters with LCL- filter and L- filter. The impedance-based analytical approach is employed to study the harmonic stability caused by the interaction between the power grid and the grid converter. A method of deriving the impedance ratios for different inverters is utilized to predict the harmonic stability of the power system through Nyquist diagrams and Bode plot. Time-domain simulations based on Matlab/Simulink are presented to validate the effectiveness of the theoretical approach and confirm conclusions from analytical studies. This study provides insight into the design of the controller under weak grid networks.
机译:风能或氢能等可再生能源已成为传统能源的可靠选择。但是对于分布式发电系统(DPGS),在弱交流电网条件下并网转换器的运行一直是稳定性和电能质量问题的挑战。本文显示了弱电网对带有LCL滤波器和L滤波器的电网压控逆变器的影响。基于阻抗的分析方法被用于研究由电网和电网转换器之间的相互作用引起的谐波稳定性。利用一种推导不同逆变器阻抗比的方法,通过奈奎斯特图和伯德图来预测电力系统的谐波稳定性。提出了基于Matlab / Simulink的时域仿真,以验证理论方法的有效性并确认分析研究的结论。这项研究为弱电网下的控制器设计提供了见识。

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