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风电变流技术 低电压穿越LVRT 故障诊断 ★ 5.0

基于双环几何控制的定子磁链调控方法用于提升DFIG风电系统低电压穿越性能

Dual-Loop Geometric Control of Stator Flux for Improved LVRT Response in DFIG-Based Wind Turbine Systems

作者 Jacqueline Dubreuil · Ignacio Galiano Zurbriggen · Jeff Pieper
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年3月
技术分类 风电变流技术
技术标签 低电压穿越LVRT 故障诊断
相关度评分 ★★★★★ 5.0 / 5.0
关键词 双馈感应发电机 电网扰动 定子磁链瞬态 双环状态平面架构 控制器
语言:

中文摘要

基于双馈感应发电机(DFIG)的风力发电系统对电网扰动敏感,影响电力系统稳定性。电网故障时,定子磁链暂态过程易引发转子过电压,导致变流器饱和甚至损坏。本文提出一种新颖的双环状态平面控制架构,通过外环几何控制器在解耦状态空间中实现快速可控的暂态响应,并兼顾多种参考轨迹设计。该控制策略在无需附加硬件、切换电路或故障检测机制的前提下,统一处理稳态与暂态工况。基于性能指标的调参方法优化了不同电压跌落程度下的动态响应,仿真验证了所提方法在各类故障下均能实现快速恢复,极端故障下功率参考跟踪时间小于一个工频周期(20 ms)。

English Abstract

Doubly Fed Induction Generator (DFIG) based wind turbinesare particularly sensitive to grid disturbances, which has implications for overall power system stability. Grid codes require continual operation of DFIGs despite certain system disturbances. During a three-phase voltage dip, the decay of a natural flux fixed to the stator of the machine induces large voltages in the rotor windings, leading to saturation of rotor converters and potential damage to the system. This work presents a novel dual-loop state-plane based architecture to solve the stator flux transient, allowing the system to regain standard operation and power reference tracking in a fast and effective manner. An outer loop geometric controller is proposed as a framework for achieving rapid and controllable transients in the decoupled state space, and various reference geometries are considered. The proposed control structure implements a unique continuous solution for both steady state and transient operating conditions and does not require any additional hardware, switching circuits, or fault detection mechanisms. Performance-based tuning is used to determine a controller that optimizes the performance index across a variety of grid fault levels, and the resultant controller is shown to achieve rapid transient response for all fault levels, with power reference tracking achieved in under one line cycle ( 20,ms ) for even the most extreme grid faults. The proposed controller is supported by detailed mathematical analysis and validated by simulation results.
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SunView 深度解读

该双环几何控制技术对阳光电源的储能变流器和光伏逆变器产品线具有重要参考价值。特别是ST系列储能变流器和SG系列光伏逆变器在弱电网或故障工况下的并网控制可借鉴其快速磁链调控思路。通过在状态空间实现解耦控制,可优化产品的电网故障穿越性能,提升系统稳定性。该方法无需增加硬件成本,可通过控制算法升级实现产品性能提升。建议在PowerTitan等大型储能系统的GFM/GFL控制中验证该技术,有望将故障恢复时间缩短至20ms以内,提升产品竞争力。