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考虑全动态特性与满载区域的永磁同步风力发电机变桨控制策略
Pitch Control Scheme Considering Entire Dynamics and Full-Load Region in PMSG-Based Wind Turbines
| 作者 | Ali Safaeinejad · Mohsen Rahimi · Dao Zhou · Frede Blaabjerg |
| 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 储能变流器PCS |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 风力发电机 变桨控制系统 增益调度PI控制器 稳定性 非线性仿真 |
语言:
中文摘要
大型风力机采用轻质材料建造,导致其在运行期间更易受阵风和尾流效应等外部扰动影响。本文旨在建立变桨控制系统设计与永磁同步风力机传动链、叶片及塔架固有动力学特性之间的联系。通过构建完整的动态模型,提出一种基于增益调度PI控制的变桨控制器,覆盖全变桨作动范围,并根据实时运行点调节参数,以保证稳定裕度并降低机组载荷。控制器设计结合频域响应、极坐标分析与模态分析,在多种工况下对线性化模型进行评估。非线性仿真结果表明,所提控制器较传统PI控制器具有更优的动态性能。
English Abstract
Large-scale wind turbines (WTs) are built with light-strength materials, which would otherwise cost more than the economic benefits of power generation. Hence, these turbines with huge rotors and slender towers are more exposed to external forces such as gust winds and the wake effect during their operational lifetime. This paper strives to establish a bridge between the design principles of the pitch control system (PCS) and the inherent dynamics of the drivetrain, blades, and tower in a grid-tied 5MW PMSG-based WT. Based on this purpose, the dynamic representation of the PCS is described in more detail, then the pitch controller is designed based on the complete dynamic model of the WT using a gain-scheduled PI controller to be capable of providing desirable dynamical performance throughout the pitch actuation region. The parameters of the proposed controller are calculated according to the current operating point of the WT with the aim of ensuring the acceptable stability margin and reducing the WT loading as much as possible. The controller design process is accomplished by analyzing the linearized dynamic model of the PCS under various scenarios using responses resulting from the frequency domain, polar coordinate, and modal analysis. Finally, nonlinear simulations illustrate that the intended pitch controller has a superior response over the traditional PI controllers.
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SunView 深度解读
该研究对阳光电源的储能变流器和风电变流产品线具有重要参考价值。文中提出的基于增益调度的PI控制策略,可应用于ST系列储能变流器和风电变流器的功率控制优化。特别是其考虑全动态特性的建模方法,有助于提升阳光电源产品在大功率场景下的稳定性控制。通过引入实时参数调节机制,可优化储能PCS的动态响应特性,提高系统在扰动工况下的适应性。这种控制策略也可集成到iSolarCloud平台,实现储能系统的智能调度和载荷优化。建议在PowerTitan大型储能系统中进行相关技术验证,以提升产品竞争力。