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直驱风力发电机并网弱电力系统暂态过电压机理分析与抑制方法
Analytical Analysis of the Mechanism and Mitigation Methods of Transient Overvoltage in Direct-Drive Wind Turbine Generators Connected to Weak Power System
| 作者 | Xu Tian · Shengtao Wu · Luran Wei · Lixin Zhang · Nan Wang · Quan Zheng |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 风电变流技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 直驱风力发电机 暂态过电压 影响因素 控制参数优化 仿真验证 |
语言:
中文摘要
风电大规模接入地区电网强度减弱,交流短路故障恢复阶段的暂态过电压对安全稳定运行构成挑战。本文建立直驱风电并网系统数学模型,详细推导端口电流表达式,考虑内环电流控制影响,得到暂态过电压具体表达式。分析了电网短路比、有功功率恢复速度、无功电流增量和内环响应速度等影响因素,提出解析控制参数优化方法抑制故障恢复过电压的幅值和恢复速度。
English Abstract
In regions with extensive wind power collection, the grid’s robustness diminishes, and transient overvoltage phenomena during the restoration phase following an AC short-circuit fault pose significant challenges to secure and stable operation. Addressing this issue, this paper establishes a mathematical model for the grid-connected system of direct-drive wind turbine generators. The expression of the terminal current is derived in detail, the impact of the inner current control loop is considered, leading to a specific expression for transient overvoltage. A comprehensive analysis is then conducted to identify various influencing factors of transient overvoltage, including grid short-circuit ratio, active power recovery speed, reactive current increment, and the response speed of the inner current loop. The conclusion is that a smaller short-circuit ratio results in a larger voltage drop and reactive current increment, which in turn leads to a higher transient overvoltage. Additionally, a slower active power recovery rate corresponds to a slower overvoltage recovery speed. Based on this analysis, an analytical control parameter optimization method is proposed to mitigate the amplitude and recovery speed of fault recovery overvoltage under various short-circuit ratios. Ultimately, a simulation model was developed within the PSCAD/EMTDC platform, and the accuracy of the transient overvoltage formulation was substantiated via analytical case studies. Furthermore, the effectiveness of the proposed method for mitigating fault recovery overvoltage was confirmed through rigorous simulation.
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SunView 深度解读
该暂态过电压抑制技术可应用于阳光电源风电变流器的弱网并网控制。通过优化控制参数和故障恢复策略,降低直驱风电机组在弱电网条件下的过电压风险,提升系统稳定性和可靠性,为大规模风电场并网提供技术支撑,保护风电变流器免受过电压损害。