IF 3.3 Q3 ENERGY & FUELS
Taulant Kërçi;Federico Milano
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引用次数: 0

摘要

本文分析了在以逆变器为基础的可再生能源为主的电力系统中新出现的一种实际现象,即频率分布不对称。本文首先解释了为什么非对称会降低频率控制和系统运行的 "质量"。然后,论文提供了定性的理论见解,从现实世界电力系统的非线性和相关模型的角度解释了非对称性。其中特别讨论了风力发电厂的网络损耗和基于变桨角的频率控制。然后,论文提出了一种减少不对称的非线性补偿控制,以及一种基于频率概率分布的统计指标,用于量化电力系统中的不对称程度。从爱尔兰和澳大利亚输电系统获得的实际数据为理论评估提供了支持,而基于 IEEE 基准系统的仿真则显示了所建议的非线性补偿的有效性。案例研究还表明,虽然自动发电控制降低了不对称程度,但频率控制限制和风力发电利用±15 mHz的严格死区(即有功功率控制)提供的基于下垂的频率支持会导致频率概率分布的不对称程度显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asymmetry of Frequency Distribution in Power Systems: Sources, Estimation, Impact and Control
This paper analyses an emerging real-world phenomena in inverter-based renewable-dominated power systems, namely, asymmetry of frequency distribution. The paper first provides a rationale on why asymmetry reduces the “quality” of the frequency control and system operation. Then it provides qualitative theoretical insights that explain asymmetry in terms of the nonlinearity of real-world power systems and associated models. In particular network losses and pitch angle-based frequency control of wind power plants are discussed. Then the paper proposes a nonlinear compensation control to reduce the asymmetry as well as a statistical metric based on the frequency probability distribution to quantify the level of asymmetry in a power system. Real-world data obtained from the Irish and Australian transmission systems serve to support the theoretical appraisal, whereas simulations based on an IEEE benchmark system show the effectiveness of the proposed nonlinear compensation. The case study also shows that, while automatic generation control reduces asymmetry, frequency control limits and droop-based frequency support provided by wind generation using a tight deadband of ±15 mHz, namely active power control, leads to a significant increase in the asymmetry of the frequency probability distribution.
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来源期刊
CiteScore
7.80
自引率
5.30%
发文量
45
审稿时长
10 weeks
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