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开绕组无刷双馈风力发电机直接功率控制容错策略
引用本文:朱连成,肖阳,金石,陈晓红.开绕组无刷双馈风力发电机直接功率控制容错策略[J].电力自动化设备,2024,44(5):73-78,87..
作者姓名:朱连成  肖阳  金石  陈晓红
作者单位:辽宁工业大学 电气工程学院,辽宁 锦州 121001;沈阳工业大学 电气工程学院,辽宁 沈阳 110870
基金项目:国家自然科学基金资助项目(51537007);辽宁省教育厅面上项目(LJKZ0617)
摘    要:针对无刷双馈发电机提出了一种控制绕组采用开绕组拓扑(OW-BDFG)的馈电方案,将三相控制绕组两端打开分别连接变流器构成双两电平变流器(D-TLCs)馈电拓扑,对机侧变流器功率器件IGBT因故障切除后的容错控制策略进行深入分析,提出了功率偏差比较直接功率控制(PEC-DPC)的D-TLCs电压空间矢量优化方案。对比分析了8/4极25 kW样机的仿真及实验结果,表明:当机侧变流器1个或2个IGBT被切除后,所提OW-BDFG的PEC-DPC仍可实现变速恒频、最大功率点跟踪及单位功率因数控制,进一步提高了该发电机系统的可靠性和鲁棒性。

关 键 词:无刷双馈发电机  开绕组  双两电平变流器  直接功率控制  容错控制  最大功率点跟踪

Direct power control strategy with fault-tolerant for open-winding brushless doubly-fed wind power generator
ZHU Liancheng,XIAO Yang,JIN Shi,CHEN Xiaohong.Direct power control strategy with fault-tolerant for open-winding brushless doubly-fed wind power generator[J].Electric Power Automation Equipment,2024,44(5):73-78,87..
Authors:ZHU Liancheng  XIAO Yang  JIN Shi  CHEN Xiaohong
Affiliation:School of Electrical Engineering, Liaoning University of Technology, Jinzhou 121001, China;School of Electrical Engineering, Shenyang University of Technology, Shenyang 110870, China
Abstract:A novel open-winding brushless doubly-fed generator(OW-BDFG) topology is proposed, the two ends of three-phase control windings are opened and respectively connected to the converter to form dual two-level converters(D-TLCs) feed topology. The fault-tolerant control strategy of D-TLCs with insulated gate bipolar transistor(IGBT) removed due to some faults is deeply analyzed, and the voltage space vector optimization scheme of D-TLCs for power error comparison direct power control(PEC-DPC) is presented. Simulative analysis and experimental verification of the 8/4-pole 25 kW prototype show that the variable speed constant frequency, maximum power point tracking and unit power factor control of the proposed PEC-DPC for the OW-BDFG can still be achieved after removing 1 or 2 IGBTs, which improves the reliability and robustness of the OW-BDFG system.
Keywords:brushless doubly-fed generator  open-winding  dual two-level converters  direct power control  fault-tolerant control  maximum power point tracking
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