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DC Impedance-Model-Based Resonance Analysis of a VSC–HVDC System

机译:基于直流阻抗模型的谐振VSC–HVDC系统的分析

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摘要

Resonances can have a negative impact on a voltage-source converter–high voltage dc (VSC–HVDC) system. This paper develops dc impedance models for the rectifier and inverter stations for a VSC-HVDC system when they are viewed from a dc terminal. The impedance models take converter controllers into account. The derived impedance models are validated by comparing frequency responses of the analytical model and the impedance measured at the dc terminal from a detailed VSC–HVDC model simulated in a real-time digital simulator. Resonances are examined in the frequency domain (e.g., Bode plots and Nyquist plots) using the derived analytical impedance models. The analysis is verified by time-domain simulations. Real-time digital simulation in RT-Lab demonstrates that the dc capacitor has a significant impact on resonances while the power transfer level has an insignificant impact on resonances.
机译:谐振会对电压源转换器–高压直流(VSC–HVDC)系统产生负面影响。当从直流端子查看时,本文为VSC-HVDC系统的整流器和逆变器站开发了直流阻抗模型。阻抗模型考虑了转换器控制器。通过比较分析模型的频率响应与在实时数字仿真器中模拟的详细VSC-HVDC模型在直流端子处测得的阻抗,可以验证导出的阻抗模型。使用导出的分析阻抗模型在频域中检查谐振(例如,波特图和奈奎斯特图)。通过时域仿真验证了该分析。 RT-Lab中的实时数字仿真表明,直流电容器对谐振有显着影响,而功率传输电平对谐振的影响则很小。

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