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Impact of Power Flow Direction on the Stability of VSC-HVDC Seen from the Impedances Nyquist Plot

机译:从阻尼奈奎斯特图看功率流方向对VsC-HVDC稳定性的影响

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摘要

The high-voltage dc (HVDC) systems are appearing more and more, and it is becoming a requirement that the HVDC voltage-source converters (VSCs) operate both as an inverter and a rectifier without changing the controls to provide the flexibility of having power flows in both directions. It is observed that the HVDC system operates stably when the power flow direction is from the power-controlled converter to the dc-voltage-controlled converter, and it becomes unstable when the power flow direction has been altered. In order to analyze such an instability problem and to design the local control, an impedance-based method is proposed. Identifying the source and the load impedance are prerequisite to apply the impedance-based method. The existing method of determining the source and the load impedance cannot predict the stability when the power flow direction is altered; therefore, a method based on the power flow direction has been presented to determine the source and the load impedance. The converter that injects power to the dc system is the current source represented with its Norton equivalent parallel impedance, while the other converter impedance is considered as the load impedance. The stability of the system is determined by the ratio of the load impedance to the current-source impedance. Once the source and the load impedance are analytically obtained, the impedance-based Generalized Nyquist stability criterion is applied to determine the stability. The system stability for the two power flow directions is well predicted from the Nyquist plot of impedance ratio. A two-terminal HVDC system has been developed in MATLAB/Simulink to demonstrate the application of this method, and the results are compared with the experimental results.
机译:高压直流(HVDC)系统的出现越来越多,并且越来越要求HVDC电压源转换器(VSC)既可以用作逆变器又可以用作整流器,而无需更改控件以提供具有电源的灵活性双向流动。可以看出,当潮流方向是从功率控制转换器到直流电压控制转换器时,HVDC系统稳定运行,而当潮流方向改变时,HVDC系统变得不稳定。为了分析这种不稳定性问题并设计局部控制,提出了一种基于阻抗的方法。识别源和负载阻抗是应用基于阻抗的方法的前提。当改变功率流向时,现有的确定源和负载阻抗的方法无法预测稳定性。因此,提出了一种基于潮流方向的方法来确定电源和负载阻抗。向直流系统注入功率的转换器是用其诺顿等效并联阻抗表示的电流源,而另一个转换器阻抗被视为负载阻抗。系统的稳定性取决于负载阻抗与电流源阻抗的比值。一旦获得了源阻抗和负载阻抗,就可以使用基于阻抗的广义奈奎斯特稳定性准则来确定稳定性。从阻抗比的奈奎斯特图可以很好地预测两个功率流向的系统稳定性。在MATLAB / Simulink中开发了一个两端HVDC系统,以演示该方法的应用,并将结果与​​实验结果进行了比较。

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