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Experimental Research and Control Strategy of Pumped Storage Units Dispatching in the Taiwan Power System Considering Transmission Line Limits

机译:考虑输电线路极限的台湾电力系统抽水蓄能机组调度实验研究与控制策略

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Taiwan’s power system is isolated and not supported by other interconnected systems. Consequently, the system frequency immediately reflects changes in the system loads. Pumped storage units are crucial for controlling power frequency. These units provide main or auxiliary capacities, reducing the allocation of frequency-regulating reserve (FRR) and further reducing generation costs in system operations. Taiwan’s Longmen Nuclear Power Plant is set to be converted for commercial operations, which will significantly alter the spinning reserves in the power system. Thus, this study proposes a safe and economic pumped storage unit dispatch strategy. This strategy is used to determine the optimal FRR capacity and 1-min recovery frequency in a generator failure occurrence at the Longmen Power Plant. In addition, this study considered transmission capacity constraints and conducted power flow analysis of the power systems in Northern, Central, and Southern Taiwan. The results indicated that, in the event of a failure at Longmen Power Plant, the proposed strategy can not only recover the system frequency to an acceptable range to prevent underfrequency load-shedding, but can also mitigate transmission line overloading.
机译:台湾的电力系统是孤立的,不受其他互连系统的支持。因此,系统频率立即反映了系统负载的变化。抽水蓄能器对于控制电源频率至关重要。这些单元提供主要或辅助容量,从而减少了频率调节储备(FRR)的分配,并进一步降低了系统运行中的发电成本。台湾的龙门核电站将进行商业运营,这将大大改变电力系统中的旋转储备。因此,本研究提出了一种安全经济的抽水蓄能机组调度策略。该策略用于确定龙门电厂发生发电机故障时的最佳FRR容量和1分钟的恢复频率。此外,本研究考虑了传输容量限制,并对台湾北部,中部和南部的电力系统进行了潮流分析。结果表明,在龙门电厂发生故障的情况下,所提出的策略不仅可以将系统频率恢复到可接受的范围内,以防止频率下的负载下降,而且还可以减轻传输线的过载。

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