An Optimal Over-frequency Generator Tripping Strategy for Regional Power Grid with High Penetration Level of Renewable Energy

IF 6.1 1区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Modern Power Systems and Clean Energy Pub Date : 2021-07-27 DOI:10.35833/mpce.2020.000374
Zhiwei Zhou, Libao Shi, Yixuan Chen
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引用次数: 4

Abstract

This paper proposes an optimal over-frequency generator tripping strategy aiming at implementing the least amount of generator tripping for the regional power grid with high penetration level of wind/photovoltaic (PV), to handle the over-frequency problem in the sending-end power grid under large disturbances. A steady-state frequency abnormal index is defined to measure the degrees of generator over-tripping and under-tripping, and a transient frequency abnormal index is presented to assess the system abnormal frequency effect during the transient process, which reflects the frequency security margin during the generator tripping process. The scenario-based analysis method combined with the non-parametric kernel density estimation method is applied to model the uncertainty of the outgoing power caused by the stochastic fluctuations of wind/PV power and loads. Furthermore, an improved fireworks algorithm is utilized for the solution of the proposed optimization model. Finally, the simulations are performed on a real-sized regional power grid in Southern China to verify the effectiveness and adaptability of the proposed model and method.
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可再生能源高渗透水平区域电网的最优过频发电机脱扣策略
针对大扰动条件下发送端电网的过频问题,提出了一种以实现风电/光伏高渗透水平区域电网中发电机脱扣次数最少为目标的最优过频发电机脱扣策略。定义了稳态频率异常指标来衡量发电机过脱扣和欠脱扣的程度,提出了暂态频率异常指标来评估暂态过程中系统的频率异常效应,反映了发电机脱扣过程中的频率安全裕度。将基于场景的分析方法与非参数核密度估计方法相结合,对风电/光伏发电功率和负荷随机波动引起的出电不确定性进行建模。此外,利用改进的烟花算法求解所提出的优化模型。最后,在中国南方的一个实际规模的区域电网上进行了仿真,验证了所提模型和方法的有效性和适应性。
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来源期刊
Journal of Modern Power Systems and Clean Energy
Journal of Modern Power Systems and Clean Energy ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
12.30
自引率
14.30%
发文量
97
审稿时长
13 weeks
期刊介绍: Journal of Modern Power Systems and Clean Energy (MPCE), commencing from June, 2013, is a newly established, peer-reviewed and quarterly published journal in English. It is the first international power engineering journal originated in mainland China. MPCE publishes original papers, short letters and review articles in the field of modern power systems with focus on smart grid technology and renewable energy integration, etc.
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