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Open-Switch Fault Tolerance Control for a Three-Level NPC/T-Type Rectifier in Wind Turbine Systems

机译:风力发电系统中三级NPC / T型整流器的开路开关容错控制

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摘要

Three-level topologies are widely used in back-to-back converters of wind turbine generation (WTG) systems. In comparison with a conventional two-level topology, three-level topologies have more advantages, particularly for the high power. Neutral-point clamped (NPC) and T-type are typical three-level topologies. An open-switch fault of a three-level rectifier that is connected to a permanent-magnet synchronous generator (PMSG) leads to the current distortion and torque vibration in WTG systems. Furthermore, WTG systems can break down in the worst case. Therefore, a tolerance control for open-switch faults is required to improve the reliability of WTG systems. WTG systems by applying the tolerance control can be stopped safely and prevent additional problems. Depending on the situation, it can keep the operation of WTG systems under open-switch fault. The effects of outer open-switch faults of three-level rectifiers are analyzed by considering PMSG specifications in this paper. Moreover, a tolerance control for outer open-switch faults of the NPC and T-type three-level rectifiers are proposed with existing tolerance controls for inner open-switch faults. The proposed tolerance control is to inject the exact -axis current value to eliminate current distortion. The simulation and experiment are conducted to prove the feasibility of the proposed tolerance control and to identify its performance.
机译:三级拓扑广泛用于风力涡轮机发电(WTG)系统的背靠背转换器中。与传统的两级拓扑相比,三级拓扑具有更多优势,特别是对于高功率而言。中性点钳位(NPC)和T型是典型的三级拓扑。连接到永磁同步发电机(PMSG)的三级整流器的开路开关故障会导致WTG系统中的电流失真和转矩振动。此外,WTG系统在最坏的情况下可能会崩溃。因此,需要对开路开关故障进行公差控制以提高WTG系统的可靠性。通过应用公差控制,WTG系统可以安全地停止并防止其他问题。根据情况,它可以使WTG系统在开路开关故障下保持运行。通过考虑PMSG规范,分析了三级整流器的外部开路开关故障的影响。此外,提出了NPC和T型三电平整流器的外部开路开关故障的容限控制,以及针对内部开路开关故障的现有容限控制。建议的公差控制是注入精确的轴电流值以消除电流失真。通过仿真和实验证明了所提出的公差控制的可行性并确定其性能。

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