论文标题
在现实的高压电力网络中发电的波动下的主要控制工作
Primary Control Effort under Fluctuating Power Generation in Realistic High-Voltage Power Networks
论文作者
论文摘要
电力系统控制的许多最新作品通过外部干扰下的全球性能指标调查了它们的同步。该方法是由电网运行的根本变化所激发的,特别是由具有新的可再生能源来源的常规发电厂替代。这种替代将同时增加发电的波动并减少可用的机械惯性。了解这两种演变将如何影响电网稳定性,这一点至关重要。除了很少有数值的例外,早期关于性能指标的作品必须依靠不切实际的网格同质性假设。在这里,我们表明,在与网格的固有时间尺度相比,在不均匀的功率网格中,修改的光谱分解可以解决不均匀功率网格中的问题。我们特别发现,由长时间的干扰产生的瞬态偏移的大小并不取决于惯性。对于大陆大小的高压电网,这对应于在几秒钟或更长时间以时间尺度相关的功率波动。我们得出的结论是,新的可再生能源产生的功率波动本身不需要部署其他旋转惯性。我们在数值上说明了我们在IEEE 118总线测试案例和欧洲大陆同步网格模型上的结果。
Many recent works in control of electric power systems have investigated their synchronization through global performance metrics under external disturbances. The approach is motivated by fundamental changes in the operation of power grids, in particular by the substitution of conventional power plants with new renewable sources of electrical energy. This substitution will simultaneously increase fluctuations in power generation and reduce the available mechanical inertia. It is crucial to understand how strongly these two evolutions will impact grid stability. With very few, mostly numerical exceptions, earlier works on performance metrics had to rely on unrealistic assumptions of grid homogeneity. Here we show that a modified spectral decomposition can tackle that issue in inhomogeneous power grids in cases where disturbances occur on time scales that are long compared to the intrinsic time scales of the grid. We find in particular that the magnitude of the transient excursion generated by disturbances with long characteristic times does not depend on inertia. For continental-size, high-voltage power grids, this corresponds to power fluctuations that are correlated on time scales of few seconds or more. We conclude that power fluctuations arising from new renewables will not require per se the deployment of additional rotational inertia. We numerically illustrate our results on the IEEE 118-Bus test case and a model of the synchronous grid of continental Europe.