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风电变流技术 储能系统 可靠性分析 ★ 5.0

考虑风电机组虚拟惯性响应的最优多阶段低频减载方案

Optimal Multi-Stage Under Frequency Load Shedding Scheme Considering Virtual Inertial Response of Wind Turbines

作者 Saleh Irandoust · Turaj Amraee · Mohammadreza Toulabi · Alireza Ashouri-Zadeh
期刊 IEEE Transactions on Power Delivery
出版日期 2024年12月
技术分类 风电变流技术
技术标签 储能系统 可靠性分析
相关度评分 ★★★★★ 5.0 / 5.0
关键词 低频减载 可再生能源 风力发电机 遗传算法 电力系统稳定性
语言:

中文摘要

严重扰动下一次频率控制不足需依赖有效的低频减载(UFLS)措施以防止系统崩溃。可再生能源并网导致系统惯性下降,给频率调控带来挑战。本文提出一种适用于高比例风电接入系统的优化多阶段UFLS方案,涵盖基础负荷与峰值负荷两种运行工况,并考虑多种故障场景及风电渗透率水平。该方案假设风电机组配备辅助控制器以提供虚拟惯性响应,参与系统频率调节。采用遗传算法优化UFLS整定值,并通过MATLAB与DIgSILENT/PowerFactory联合仿真验证。结果表明,风电机组参与频率响应显著提升UFLS性能,减少总切负荷量,有效增强含可再生能源电力系统的稳定性与可靠性。

English Abstract

Insufficient primary frequency control during severe disturbances requires the implementation of effective under frequency load shedding (UFLS) measures to prevent system collapse. The integration of non-dispatchable renewable energy sources like wind and solar, which are known for their variability, poses challenges to frequency management due to decreased system inertia. Consequently, there is a need for a comprehensive UFLS relay scheme tailored to renewable energy-integrated systems, aiming to enhance reliability and stability while minimizing unnecessary load shedding during under frequency events caused by unpredictable renewable sources. In this research paper, we present an optimal and robust multi-stage UFLS scheme designed for two operating points: base-load and peak-load. The suggested scheme considers different levels of wind power penetration and incorporates various contingency scenarios. The proposed UFLS scheme assumes that wind turbines are equipped with auxiliary controllers to actively participate in the power system frequency control task. To optimize the scheme, a genetic algorithm (GA) is employed, and the performance is evaluated through simulations using MATLAB and DIgSILENT/PowerFactory link. The results of the study demonstrate that the involvement of wind turbines in the frequency response significantly improves the performance of the UFLS scheme and reduces the total amount of load shedding required. This research provides valuable insights into addressing the challenges posed by renewable energy integration and offers a potential solution to enhance the reliability and stability of power systems in the presence of renewable sources.
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SunView 深度解读

该研究对阳光电源储能与风电变流产品的频率响应控制具有重要参考价值。研究提出的虚拟惯性响应方案可直接应用于ST系列储能变流器和风电变流器的GFM控制策略优化,提升系统频率支撑能力。特别是在PowerTitan大型储能系统中,可基于此开发多阶段自适应UFLS控制算法,实现储能系统与风机的协同调频。这对提升阳光电源在高比例新能源场景下的产品竞争力具有积极意义。建议在现有VSG控制基础上,将该方案与iSolarCloud平台结合,开发基于大数据的智能频率响应优化功能。