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风电变流技术 储能系统 构网型GFM ★ 5.0

将风力涡轮机作为同步发电机运行:建模与电力硬件在环演示

Operating Wind Turbine as Synchronous Generator: Modeling and Power-Hardware-in-the-Loop Demonstration

作者 Weihang Yan · Vahan Gevorgian · Przemyslaw Koralewicz · Robb Wallen · S M Shafiul Alam · Shahil Shah
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年9月
技术分类 风电变流技术
技术标签 储能系统 构网型GFM
相关度评分 ★★★★★ 5.0 / 5.0
关键词 5型风力发电机 并网形成控制 电网强度 硬件在环测试 逆变器资源高集成度电网
语言:

中文摘要

III型和IV型风力发电机组(WTG)的构网型(GFM)控制在电力系统研究中受到广泛关注,但电力电子变流器有限的过电流能力持续削弱未来电网的强度。同步风电(即V型WTG)通过在高比例可再生能源并网下维持电网同步性,为解决并网与电网强度问题提供了独特的GFM解决方案。V型WTG通过由变速液压扭矩变换器驱动的同步发电机接入电网,实现风轮机变速运行以最大化发电,同时保持发电机轴与电网同步。本文在电力硬件在环环境中建立并测试了V型WTG的高保真模型,展示了其在不同电网故障下的运行特性。实验结果表明,V型WTG天然具备GFM能力,在功率响应、风轮动态及稳定性提升方面可媲美GFM模式下的III型WTG,为高比例逆变型资源电网的平稳过渡提供了新思路。

English Abstract

Grid-forming (GFM) control of Type 3 and Type 4 wind turbine generators (WTGs) has attracted substantial attention in power systems research; however, the limited overcurrent capability of power electronics converters continues to deteriorate the grid strength of the evolving power systems. Synchronous wind, also referred to as a Type 5 WTG, offers a unique GFM solution to address grid integration and grid strength issues by keeping the grid largely synchronous at very high integration levels of renewable generation. A Type 5 WTG interfaces with the power system via a synchronous generator driven by a variable-speed hydraulic torque converter; hence, the wind rotor operates in variable-speed mode for maximum power generation, and the generator shaft remains synchronous to the grid. This paper develops and tests a high-fidelity model of a Type 5 WTG in a power-hardware-in-the-loop testing environment, and it presents its operation characteristics under different grid contingencies. The power-hardware-in-the-loop demonstration shows that a Type 5 WTG inherently behaves as a GFM unit and can obtain similar performance in terms of power response, wind rotor dynamics, and stability enhancement compared to a Type 3 WTG in GFM control mode. The paper provides further insight into how Type 5 WTGs can support the smooth transition to power systems with high integration levels of inverter-based resources.
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SunView 深度解读

该研究对阳光电源的储能与光伏产品线具有重要启发意义。V型WTG的GFM特性与我司ST系列储能变流器的VSG控制理念高度契合,其通过机械惯量提供同步支撑的方案可借鉴应用于PowerTitan大型储能系统的惯量响应控制。研究中的液压扭矩变换技术也为SG系列光伏逆变器在弱电网条件下的并网控制提供了新思路。特别是在高比例新能源场景下,该技术有助于提升储能变流器的电网支撑能力,优化光储协同运行策略。建议在ST储能产品线中融入类似的同步控制理念,增强系统的电网友好性。