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Research on optimization method of primary frequency modulation capability based on different ratios of hydropower

机译:基于不同水电比率的初级调制能力优化方法研究

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摘要

With the continuous development of China’s cross-regional interconnected power grid, large- capacity and long-distance transmission have become an important feature of China’s power grid. As the transmission capacity of single-return transmission lines continues to increase, the risk of frequency fluctuations increases, making grid operation scheduling more concerned with the performance of the unit’s primary frequency modulation. This paper tests the frequency stability of a power system under different scenarios, in which the proportion of water and thermal power in the system is different. The results represent that a system with a large proportion of hydropower has poorer frequency stability. This paper offers a method of primary frequency modulation, which proposed to improve the frequency stability of the system by increasing the time delay of the hydropower unit’s governor. The results of simulation prove that this method is an available solution to solve the problem of poor system frequency stability when a system has a high ratio of hydropower.
机译:随着中国交叉区域互联电网的不断发展,大容量和长距离传输已成为中国电网的重要特色。随着单返回传输线的传输容量继续增加,频率波动的风险增加,使得网格运行调度更加关注单元的初级频率调制的性能。本文测试了不同场景下电力系统的频率稳定性,其中系统中的水和热力的比例不同。结果表示具有较大比例水电的系统具有较差的频率稳定性。本文提供了一种初级频率调制方法,提出通过增加水电单元调速器的时间延迟来提高系统的频率稳定性。仿真结果证明了这种方法是当系统具有高比例的水电时,解决系统频率稳定性差的问题。

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