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首页> 外文期刊>Renewable Power Generation, IET >Steady-state performance assessment of three- and five-phase permanent magnet generators connected to a diode bridge rectifier under open-circuit faults
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Steady-state performance assessment of three- and five-phase permanent magnet generators connected to a diode bridge rectifier under open-circuit faults

机译:开路故障下连接到二极管桥式整流器的三相和五相永磁发电机的稳态性能评估

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摘要

Small-scale wind turbines often utilise permanent magnet generators that supply power via an uncontrolled diode rectifier. In such systems, a custom generator design is required to optimise the aerodynamic and electromechanical performance; therefore the phase number of the generator is not restricted. This study assesses and compares the performance of prototype 700 W five- and three-phase permanent magnet generators connected to a diode bridge rectifier and their performance under open-circuit fault conditions. The simulation and experimental results demonstrate that the five-phase system can utilise a smaller DC-link capacitor and develops lower shaft torque ripple compared to the three-phase system. The three-phase generator can only tolerate one single-phase open-circuit failure. However, three possible opencircuit phase failure modes are considered in the five-phase machine: a single open-circuit phase and two open-circuit phases, where the two phases can be adjacent or non-adjacent. It is shown that the shaft torque ripple and output power are superior in the five-phase system with both the single-phase failure mode and the non-adjacent phase failure mode compared to the three-phase system with a single-phase failure. However, the adjacent phase failure mode is more extreme and generates less output power than the threephase system. Simulation and finite-element analysis results are verified by experiments on the prototype 30-slot, four-pole, double-layer, surface-mounted permanent magnet generator.
机译:小型风力涡轮机通常使用永磁发电机,该永磁发电机通过不受控制的二极管整流器供电。在这样的系统中,需要定制发电机设计以优化空气动力和机电性能。因此,发电机的相数不受限制。这项研究评估并比较了连接到二极管桥式整流器的原型700 W五相和三相永磁发电机的性能以及它们在开路故障条件下的性能。仿真和实验结果表明,与三相系统相比,五相系统可以使用较小的直流母线电容器,并产生较低的轴转矩脉动。三相发电机只能承受一个单相开路故障。但是,在五相电机中考虑了三种可能的开路相故障模式:一个开路相和两个开路相,其中两个相可以相邻或不相邻。结果表明,与具有单相故障的三相系统相比,在具有单相故障模式和非相邻相故障模式的五相系统中,轴转矩脉动和输出功率均优越。但是,与三相系统相比,相邻相故障模式更为极端,并且产生的输出功率更少。通过在原型30槽,四极,双层,表面安装式永磁发电机上进行的实验验证了仿真和有限元分析结果。

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  • 来源
    《Renewable Power Generation, IET》 |2010年第5期|P.420-427|共8页
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    Department of Electronic and Electrical Engineering, University of Strathclyde;

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  • 正文语种 eng
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