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Quasi-Static Stability of HVDC Systems Considering Dynamic Effects of Synchronous Machines and Excitation Voltage Control

机译:考虑同步电机动态效应和励磁电压控制的HVDC系统准静态稳定性

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摘要

Recent works have shown the impact of dynamic system on the power stability of HVDC systems by different modeling. This had been mainly studied from an empirical approach based on time-domain simulations but rigorous justification from a mathematical standpoint is deemed essential. Thus in this paper, a mathematical model of power/voltage stability in HVDC systems incorporating detailed machine representation and voltage control is presented. Based on this, analytic expressions of power/voltage stability indices are derived. These expressions explicitly reveal the fundamental difference between the corresponding power/voltage stability indices with and without considering dynamic effects of the machine and its excitation voltage control. Thereby, the dynamic impacts of the machine can be characterized quantitatively. The relationships between the indices and their quasi-static counterparts are also shown. Time-domain simulations also verify the dynamic impacts as predicted by the analytic models.
机译:最近的工作已经通过不同的模型表明了动态系统对高压直流输电系统功率稳定性的影响。这主要是通过基于时域模拟的经验方法进行研究的,但是从数学角度出发,严格的论证被认为是必不可少的。因此,在本文中,提出了结合详细的机器表示和电压控制的HVDC系统中功率/电压稳定性的数学模型。基于此,推导了功率/电压稳定性指标的解析表达式。这些表达式明确地揭示了在考虑和不考虑电机及其励磁电压控制的动态影响的情况下,相应的功率/电压稳定性指标之间的根本差异。由此,可以定量地表征机器的动态冲击。还显示了索引与其准静态对应项之间的关系。时域仿真还验证了解析模型所预测的动态影响。

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