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Optimized Power Error Comparison Strategy for Direct Power Control of the Open-Winding Brushless Doubly Fed Wind Power Generator

机译:开式无刷双馈风力发电机直接功率控制的优化功率误差比较策略

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摘要

This paper presents the simulation and experimental evaluation of a novel power error comparison direct power control (PEC-DPC) strategy of the open-winding brushless doubly fed reluctance generator (OW-BDFRG) for wind energy conversion systems. As one of the promising candidates for limited speed range application of pump-alike and wind turbine with partially rated converter. The emerging OW-BDFRG employed for the proposed PEC-DPC is fed via dual low-cost two-level converters, while the DPC concept is derived from the fundamental dynamic analyses of the calculated and controllable electrical power and flux of the BD-FRG with two stators measurable voltage and current. Compared to the traditional two-level and three-level converter systems, the OW-BDFRG requires lower rated capacity of power devices and switching frequency converter, though have more flexible switching mode, higher reliability, redundancy, and fault tolerance capability. The performance correctness and effectiveness of the proposed DPC strategy with the selected and optimized switching vector scheme are evaluated and confirmed on a 25 kW generator test rig.
机译:本文介绍了一种用于风能转换系统的开放式无刷双馈磁阻发电机(OW-BDFRG)的新型功率误差比较直接功率控制(PEC-DPC)策略的仿真和实验评估。作为具有部分额定转换器的类似泵和风力涡轮机的有限速度范围应用的有希望的候选人之一。拟议的PEC-DPC使用的新兴OW-BDFRG是通过双低成本两电平转换器馈电的,而DPC概念则是通过对BD-FRG的计算和可控制的电功率和通量进行基本动态分析得出的。两个定子可测量的电压和电流。与传统的两级和三级转换器系统相比,OW-BDFRG具有更灵活的切换模式,更高的可靠性,冗余性和容错能力,但要求功率设备和开关变频器的额定容量更低。在25 kW发电机测试台上评估并确认了所提出的DPC策略与选定和优化的开关矢量方案的性能正确性和有效性。

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