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风电变流技术 储能系统 下垂控制 调峰调频 ★ 5.0

用于缓解二次频率跌落的风力发电机频率控制协同策略:系数分配与退出技术

Cooperative Strategies for Frequency Control of Wind Turbines to Mitigate Secondary Frequency Dip: Coefficient Allocation and Exit Techniques

作者 Zishuo Huang · Wenchuan Wu · Chenhui Lin · Zizhen Guo
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年11月
技术分类 风电变流技术
技术标签 储能系统 下垂控制 调峰调频
相关度评分 ★★★★★ 5.0 / 5.0
关键词 二次频率跌落 协同方法 频率响应模型 系数优化 退出策略
语言:

中文摘要

随着风电在电力系统中渗透率的提高,通过惯性和下垂控制使风电机组参与电网一次调频已得到验证。然而,在风电机组退出调频以恢复转速时,可能引发二次频率跌落(SFD)。本文提出一种协同控制策略以缓解SFD。首先建立包含同步机组与风电机组的系统频率响应模型,并构建风电转速动态预测模型。基于此优化风电场内各机组的下垂与惯性系数,在保证转速安全的前提下最小化总风能损耗,从而抑制SFD。进一步设计基于低通滤波器的平滑过渡策略,避免退出调频时有功功率突降。最后提出分阶段退出机制,防止大量机组同时退出导致功率骤减。仿真结果验证了所提方法的有效性。

English Abstract

With the increasing integration of wind power into the power system, the incorporation of wind turbines into the grid's primary frequency regulation through inertia and droop control has been proven effective. However, a phenomenon known as secondary frequency dip (SFD) occurs when wind generators exit frequency regulation to restore the turbines’ speeds. This paper introduces a cooperative approach to mitigate SFD. Initially, a system frequency response model is established, incorporating the combined effects of synchronous generators and wind turbines. Subsequently, a model to forecast the rotational speed of each wind turbine in response to load changes is developed. Based on these models, the droop and inertia coefficients of different turbines in a wind farm are optimized to minimize overall wind energy loss during frequency regulation, thereby alleviating SFD, while ensuring the rotational speed remains within a safe range. Additionally, a smooth transition strategy based on a low-pass filter is proposed to prevent an abrupt decrease in active power as turbines exit frequency regulation. Finally, to prevent a simultaneous drop in active power among a large number of wind turbines, a sequential exit strategy from frequency regulation is proposed. Simulation results validate the effectiveness of the proposed methods in mitigating SFD.
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SunView 深度解读

该研究的协同频率控制策略对阳光电源ST系列储能变流器和大型储能系统具有重要参考价值。文中提出的系数优化分配和平滑退出机制,可直接应用于储能系统的GFM控制算法优化,提升电网支撑能力。特别是基于低通滤波的平滑过渡方案,可用于改进PowerTitan系统的调频响应特性,避免功率突变。这些技术创新对完善阳光储能产品的一次调频功能、提高电网适应性具有积极意义。建议在ST系列新产品中融入该协同控制策略,进一步增强储能系统的电网友好性。