提高双馈风电变流器IGBT模块可靠性的组合模型预测控制策略

Yu Hu, Hui Li, Xiangiie Xie, Guisen Xia, Tian Yang, You Wu
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引用次数: 0

摘要

针对双馈感应发电机(DFIG)转子侧变换器结温波动大、功率损耗大的问题,提出了一种降低结温和开关损耗的组合模型预测控制策略。首先,根据DFIG风电变流器中IGBT模块的结构,建立了等效热网模型;然后,提出了一种基于功率-速度外控制环的改进最大功率点跟踪控制策略,通过缩短转子侧变换器在同步速度附近的低频持续时间和增大其速度梯度来实现。此外,结合模型预测电流控制策略,可以降低IGBT模块的开关损耗。最后,通过电热模型仿真和等效实验测试,分析了IGBT模块结温和功耗的动态特性。仿真和实验结果表明,所提出的控制策略能够有效地抑制IGBT结温波动和功率损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined Model Predictive Control Strategies to Improve the Reliability of IGBT Module in Doubly Fed Wind Power Converter
The reliability of the rotor side converter of doubly fed induction generator (DFIG) could be greatly degraded due to large junction temperature fluctuation and high power loss, a combined model predictive control strategy is proposed to reduce the junction temperature and switching loss. First, based on the structure of IGBT modules in DFIG wind power converter, the equivalent thermal network model is presented. Then, an improved maximum power point tracking control strategy, based on the power-speed outer control loop, is proposed by shortening the low frequency durations and increasing the speed gradient of the rotor side converter around synchronous speed. Furthermore, combined with the model predictive current control strategy, the switching loss of IGBT modules could be reduced. Finally, the dynamic performances of the junction temperature and power loss of IGBT modules are analyzed through the electrical-thermal model simulation and the equivalent experiment testing. Both simulation and experimental results show that the proposed control strategy could be effective to depress the IGBT junction temperature fluctuation and power loss.
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