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The Study and Modeling of Multi-phase PMSM Variety Speed System with High Fault-Tolerant

机译:具有高容错耐力的多相PMSM品种速度系统的研究与建模

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The general methods of analysis and study for multi-phase permanent magnet synchronous motor (PMSM) variety speed system based on the vector space decomposition theory are discussed in this paper. Furthermore, the reliability of the system is discussed and a fault-tolerant compensation strategy purposed forming the revolving magnetic field in order to solve the system occurred familiar faults is also introduced, thereby improve consumedly the ability of fault-tolerant. The essential conditions restricted for the broken-down system work are also analysis, so that preparing much more to optimize compensation strategies. Simulation and experimental results show that the system can achieve preferable characteristics. Simulation results show that the model based on the proposed method is scientific and available, and the experimental results carried out on a 5 kW six-phase disk PMSM and a TMS320F2407 DSP are given and discussed.
机译:本文讨论了基于矢量空间分解理论的多相永磁同步电动机(PMSM)各种速度系统的分析和研究的一般方法。此外,还介绍了系统的可靠性,并且还引入了形成旋转磁场的容错补偿策略,以解决系统发生熟悉的故障,从而可以改善容错能力的能力。限制对破碎系统工作的基本条件也在分析,因此更多地准备优化赔偿策略。仿真和实验结果表明,该系统可以达到优选的特性。仿真结果表明,基于所提出的方法的模型是科学且可用的,并且给出并讨论了在5 kW六相磁盘PMSM和TMS320F2407 DSP上进行的实验结果。

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