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风电变流技术 储能系统 构网型GFM 多物理场耦合 ★ 5.0

构网型风力发电机的振荡能量传递与综合稳定控制

Oscillation Energy Transfer and Integrated Stability Control of Grid-Forming Wind Turbines

作者 Xiangyu Zhang · Yongxuan Huang · Yuan Fu
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年10月
技术分类 风电变流技术
技术标签 储能系统 构网型GFM 多物理场耦合
相关度评分 ★★★★★ 5.0 / 5.0
关键词 电网形成型风机 同步发电机 振荡能量转移 动态稳定性 控制参数设计
语言:

中文摘要

构网型风力发电机与同步机之间的高效振荡能量传递是提升高比例可再生能源区域电网动态稳定性的重要途径。本文分析了构网型双馈感应风机与同步机间的弹性耦合关系,建立了包含构网型风电的两自由度动态系统模型,采用根轨迹法研究虚拟惯性和阻尼对系统稳定性的影响,并基于频率变化率约束获取虚拟惯性需求。进一步利用哈密顿能量函数法分析振荡能量传递机理,提出基于能量高效传递条件的构网型双馈风机控制参数设计方法。最后在New England系统及9节点硬件在环平台上验证了所提控制策略的有效性,结果表明其显著提升了双馈风机对系统功率振荡和频率波动的支撑能力。

English Abstract

Efficient oscillation energy transfer between grid-forming wind turbine and synchronous generator (SG) is the key to improving the dynamic stability of regional power grid with a high proportion of renewable power generation. This paper first analyzes the elastic coupling relationship between the doubly fed induction generator (DFIG)-based wind turbines and the SGs under the grid-forming control, establishing a two-degrees-of- freedom dynamic system model incorporating grid- forming wind power generation. The root locus method is then applied to analyze the influence of virtual inertia and damping on the system's dynamic stability. Subsequently, the virtual inertia demand of grid-forming wind turbines is obtained based on the constraint of frequency change rate. Moreover, the oscillation energy transfer mechanism between grid-forming wind turbine and SG is further analyzed using the Hamiltonian energy function method. Then, a novel design scheme of the control parameters of the grid-forming DFIG is proposed using the condition for the efficient transfer of oscillation energy between generators. Finally, the proposed control is verified in the New England simulation system and a 9-node power system on the controller hardware-in-the-loop platform with high wind power penetration. The test results demonstrate that the proposed control significantly improves the grid-connected support performance of the DFIG to suppress system power oscillation and frequency change.
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SunView 深度解读

该研究对阳光电源的储能和风电变流器产品线具有重要参考价值。文中提出的构网型控制及能量传递机理可直接应用于ST系列储能变流器的VSG控制优化,特别是在大规模新能源并网场景中提升系统稳定性。基于频率变化率约束的虚拟惯性设计方法,可用于完善PowerTitan储能系统的一次调频功能。研究成果也可迁移应用到公司风电变流器产品线,通过优化控制参数提升风机的振荡抑制和频率支撑能力。这对提升阳光电源在高比例可再生能源并网市场的竞争力具有积极意义。