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Optimal tuning of governors on synchronous generators in a multi-area power system with a large photovoltaic plant

机译:大型光伏厂多区电力系统同步发电机调速器的最佳调整

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The integration of renewables, such as solar and wind power, introduces new challenges for existing multi-area power system operations. These variable generation sources are transforming the grid into a more dynamic system which significantly affects real-time operation. With dynamic generation, supply and demand will deviate frequently over time causing severe frequency fluctuations. The generators on the grid must respond rapidly to these fluctuations in order to stabilize the system and ultimately return to nominal frequency. In this paper, a 210 MW photovoltaic (PV) plant is integrated into a two-area four-machine power system. Due to the output variations of the PV plant, especially during cloudy conditions, the system frequency will significantly fluctuate. The objective of this paper is the optimal tuning of governors on synchronous generators in order to damp and mitigate frequency deviations as fast as possible. The governor parameters are tuned using a heuristic optimization method to provide the least number of frequency events and minimum frequency deviation with varying penetration levels of PV power. With optimally tuned governor parameters, a multi-area power system can operate reliably while maximizing the utilization of clean power generation sources.
机译:可再生能源的整合,如太阳能和风电,为现有的多区域电力系统运营引入了新的挑战。这些可变生长源正在将网格转换为更具动态系统,这显着影响实时操作。具有动态的产生,供需将频繁偏离导致严重的频率波动。网格上的发电机必须迅速响应这些波动,以稳定系统并最终返回标称频率。在本文中,将210MW光伏(PV)厂集成到两区域四机电力系统中。由于光伏工厂的输出变化,特别是在多云条件期间,系统频率将显着波动。本文的目的是同步发电机上的调速器的最佳调整,以便尽可能快地抑制和减轻频率偏差。使用启发式优化方法调谐调速器参数,以提供最小数量的频率事件和最小频率偏差,其具有不同的PV功率的渗透水平。通过最佳调整调节器参数,多区域电源系统可以可靠地运行,同时最大限度地利用清洁发电源。

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