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Dual Two-Level Converters Based on Direct Power Control for an Open-Winding Brushless Doubly-Fed Reluctance Generator

机译:开式无刷双馈磁阻发电机的基于直接功率控制的双二电平转换器

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摘要

This paper proposes a novel open-winding brushless doubly-fed reluctance generator (OW-BDFRG) with dual two-level converters in order to reduce the converter rating and switching frequency for large-scale wind turbine applications. The new converter topology is equivalent to a three-level converter directly connected to the control winding of typical BDFRG. The OW-BDFRG system with this topology structure requires lower converter rating and switching frequency, and has a more flexible control mode, better operation performance, and fault redundancy capability. For the OW-BDFRG, this paper also proposes a new control scheme combining direct power control (DPC) with sliding mode variable structure (SMVS) control to implement the power tracking. The voltage-vector switching table of DPC is redesigned according to the error signals of active and reactive powers of the power winding, as well as the sector location of control winding flux. The active and reactive powers of the OW-BDFRG can be directly decoupled and independently controlled by properly selecting the switching voltage vectors. The novelty of this paper lies in an OW-BDFRG topology driven by dual two-level converters to improve the system characteristics, and the use of SMVS control to improve the DPC accuracy and robustness to parameter variations. Finally, the effectiveness of the proposed system is verified through simulation and experimental studies.
机译:本文提出了一种新颖的带有双二级转换器的开式无刷双馈磁阻发电机(OW-BDFRG),以降低大型风力涡轮机应用的转换器额定值和开关频率。新的转换器拓扑等效于直接连接到典型BDFRG的控制绕组的三电平转换器。具有这种拓扑结构的OW-BDFRG系统要求较低的转换器额定值和开关频率,并具有更灵活的控制模式,更好的操作性能和故障冗余能力。对于OW-BDFRG,本文还提出了一种新的控制方案,该方案将直接功率控制(DPC)与滑模变结构(SMVS)控制相结合以实现功率跟踪。根据功率绕组有功功率和无功功率的误差信号以及控制绕组磁通的扇区位置,重新设计了DPC的电压矢量切换表。 OW-BDFRG的有功功率和无功功率可以通过适当选择开关电压矢量直接去耦和独立控制。本文的新颖之处在于由双二电平转换器驱动的OW-BDFRG拓扑以改善系统特性,并使用SMVS控制来提高DPC精度和参数变化的鲁棒性。最后,通过仿真和实验研究验证了所提系统的有效性。

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