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Placement of variable-speed wind power generators in power systems considering steady-state voltage stability

机译:考虑稳态电压稳定性的电力系统中的变速风力发电机的放置

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This paper investigates the most suitable location to place variable-speed wind generator based wind farms in a power system considering the steady-state voltage stability. The doubly-fed induction generator (DFIG) and the full-converter wind generator (FCWG) based wind generation is considered and the inherent reactive power capability of these generators are accurately represented in the study. Steady-state voltage stability is analysed using QV modal analysis and QV curves. QV modal analysis is used to identify the weak and strong busbars in the test system. Wind power generators with different power outputs are integrated to the power system from weak and strong busbars and the impact of voltage stability is compared using QV stability margins of the busbars. The results demonstrate that adding wind generation from the weak busbars significantly increases the QV stability margin of the weak busbars. However, adding wind generation from strong busbars slightly improve the stability margin of the weak busbars. Therefore, placing wind farms in the weak busbars in a power system is favorable for the overall voltage stability. Furthermore, the results of DFIG and FCWG based wind generation are compared and the higher reactive power capability of the FCWG based wind generation to support the voltage stability is demonstrated.
机译:本文调查了考虑稳态电压稳定性的电力系统中可变风力发电机的风电场最合适的位置。考虑了双馈感应发电机(DFIG)和全转换器风力发生器(FCWG)的风发电,并且在研究中准确地示出了这些发电机的固有的无功功率能力。使用QV模态分析和QV曲线分析稳态电压稳定性。 QV模态分析用于识别测试系统中的弱和强大的母线。具有不同功率输出的风力发电机与弱和强母线的电力系统集成,并使用汇流栏的QV稳定性边缘进行比较电压稳定性的冲击。结果表明,从弱母线中添加风发电显着增加了弱母线的QV稳定性边缘。然而,从强大的母线中添加风发电略微提高弱母线的稳定性余量。因此,将风电场放置在电力系统中的弱母线上有利于整体电压稳定性。此外,比较了DFIG和基于FCWG的风力产生的结果,并且证明了基于FCWG的风发电的较高的无功功率能力以支持电压稳定性。

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