Quantitative Analysis of Frequency Dynamics in Real Power System

H. Qin, Yongji Cao, Hengxu Zhang, Zhimin Gao, Dong Yang, Huan Ma
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引用次数: 1

Abstract

As the proportion of renewable energy sources increases, the randomness and volatility of the frequency increase, and its dynamic behaviors are becoming more complex. In order to clearly characterize the frequency fluctuation characteristics of the power system, the long-term statistical characteristics are analyzed based on the measured data. The bimodal normal distribution is used, and the measured frequency is decomposed into continuous and short-time-scale components using the moving average method. Based on historical data, the derivation law of the frequency fluctuation characteristics of regional power system is explored, and it is found that the frequency fluctuation characteristics of different regions continue to differentiate, and the characteristics of the sending-end power system frequency being higher than the rated frequency and relatively drastic fluctuations are becoming more and more obvious.
实际电力系统频率动力学定量分析
随着可再生能源比例的增加,频率的随机性和波动性增加,其动态行为也变得更加复杂。为了清晰地表征电力系统的频率波动特性,在实测数据的基础上分析了电力系统的长期统计特性。采用双峰正态分布,采用移动平均法将实测频率分解为连续分量和短时间尺度分量。在历史数据的基础上,探索了区域电力系统频率波动特性的推导规律,发现不同区域的频率波动特性不断分化,发送端电力系统频率高于额定频率且波动相对剧烈的特征越来越明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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