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Modeling and Validation of DFIG 3-MW Wind Turbine Using Field Test Data of Balanced and Unbalanced Voltage Sags

机译:使用平衡和不平衡电压暂降的现场测试数据对DFIG 3-MW风力发电机组进行建模和验证

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摘要

A complete model of a doubly fed induction generator-based wind turbine generation system and its control scheme are developed. All components such as converters, dc-link, protections, and grid are modeled. Control techniques for torque, reactive power, and dc-link voltage are analyzed for balanced and unbalanced faults ride-through performance. Simulation results are validated and compared with field test measurements of an operational 3-MW wind turbine. Balanced and unbalanced voltage sags have been provoked and the data required by the grid codes to perform a validation process have been sampled by means of a data acquisition system. A comparison between field test data and simulation results is done and the variables used to validate the model are plotted showing their evolution along the voltage dip and after the fault clearance. The results are validated according to Spanish and German grid codes.
机译:开发了基于双馈感应发电机的风力发电系统的完整模型及其控制方案。所有组件(例如转换器,直流母线,保护和电网)均已建模。分析了转矩,无功功率和直流母线电压的控制技术,以实现平衡和不平衡的故障穿越性能。仿真结果经过验证,并与运行中的3兆瓦风力涡轮机的现场测试测量结果进行了比较。已经引起了平衡和不平衡的电压骤降,并且已经通过数据采集系统对电网代码执行验证过程所需的数据进行了采样。完成了现场测试数据与仿真结果之间的比较,并绘制了用于验证模型的变量,以显示其沿电压骤降和故障清除后的演变。根据西班牙和德国的电网规范对结果进行了验证。

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