论文标题
大风发电厂整合场景中的电力系统惯性估计分析
Analysis of power system inertia estimation in high wind power plant integration scenarios
论文作者
论文摘要
如今,由于可再生能源(主要是风能和PV发电厂)代替常规单元,电力系统的惯性正在发生变化。这一事实严重影响了功率失衡下的网格频率响应。结果,正在开发针对可再生工厂的新频率控制策略,以模仿这种意外情况下的常规发电厂的行为。这些方法通常称为“虚拟惯性仿真技术”。在本文中,通过考虑不同的惯性估计方法,讨论这些方法在新的供应端情况下的适用性和相干性,对频率偏移的电力系统惯性估计进行分析。建模的电力系统涉及常规单元和风力发电厂,包括与当前混合生成方案一致的风频控制策略。结果表明,所有被认为的方法都提供了准确的结果,可以根据直接连接到网格的旋转产生单元来估计等效惯性。但是,当在与网格脱钩的风力发电厂中包括频率控制策略时,发现显着差异。通过这种方式,作者认为有必要通过包括虚拟惯性仿真来定义替代性惯性估计方法。本研究还提供了广泛的讨论和结果。
Nowadays, power system inertia is changing as a consequence of replacing conventional units by renewable energy sources, mainly wind and PV power plants. This fact affects significantly the grid frequency response under power imbalances. As a result, new frequency control strategies for renewable plants are being developed to emulate the behaviour of conventional power plants under such contingencies. These approaches are usually called 'virtual inertia emulation techniques'. In this paper, an analysis of power system inertia estimation from frequency excursions is carried out by considering different inertia estimation methodologies, discussing the applicability and coherence of these methodologies under the new supply-side circumstances. The modelled power system involves conventional units and wind power plants, including wind frequency control strategies in line with current mix generation scenarios. Results show that all methodologies considered provide an accurate result to estimate the equivalent inertia based on rotational generation units directly connected to the grid. However, significant discrepancies are found when frequency control strategies are included in wind power plants decoupled from the grid. In this way, authors consider that it is necessary to define alternative inertia estimation methodologies by including virtual inertia emulation. Extensive discussion and results are also provided in this study.