考虑直流侧动态的VSC-HVDC系统阻抗模型用于交流电网稳定性分析

Nina Liu, Hong Wang, Xiaoyong Zheng, Zhe Chen
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引用次数: 0

摘要

高压直流换流站的交流侧阻抗建模通常忽略直流侧的动态特性,而是将电缆和另一个换流站的动态特性表示为恒功率源或恒压源。直流侧电网动态对交流侧小信号稳定性的影响尚未得到很好的分析。本文提出了三相电压源变换器(VSC)的三端口传输矩阵模型,该模型通过将交流侧和直流侧的电流和电压联系起来,直观地表征了交流侧和直流侧的动态特性。该模型不仅推导出了直流侧电网的等效阻抗,而且考虑到直流侧电网的阻抗特性,可以很容易地得到改进的VSC交流阻抗模型。通过对比修正后的阻抗模型与原阻抗模型的阻抗特性,表明在高压直流系统中,如果忽略直流侧动态,可能会导致稳定性评估结果不正确。提出的三端口传输矩阵模型简化了高压直流输电系统的阻抗建模过程,改进的交流阻抗模型提供了准确的高压直流输电系统稳定性分析。仿真结果验证了所建阻抗模型的正确性和改进的交流阻抗模型在稳定性分析中的有效性。
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An Impedance Model of a VSC-HVDC System Considering DC-side Dynamics for AC grid Stability Analysis
AC side impedance modelling of an HVDC converter station usually ignores the DC-side dynamics, instead, the dynamics characteristic of cable and another converter station is represented as a constant power source or a constant voltage source. The influence of DC-side power network dynamics for AC-side small-signal stability is not yet well analysed. This paper presents a three-port transfer matrix model of the three-phase voltage source converter (VSC) which intuitively characterizes both AC- and DC-side dynamics by relating AC- and DC-side current and voltages. This model not only derive the equivalent impedance of the DC-side power network but also easily obtain a modified AC impedance model of VSC considering the impedance characteristic of the DC-side network. With comparing the impedance characteristics of the modified impedance model and the original impedance model, this paper shows that if the DC-side dynamics are ignored in an HVDC system, it may lead to an incorrect result of stability assessment. The proposed three-port transfer matrix model simplifies the impedance modelling process of the HVDC transmission system and the modified AC impedance model provides accurate stability analysis of the HVDC transmission system. Simulation results are given to validate the correctness of the proposed impedance model and the effectiveness of the modified AC impedance model for stability analysis.
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