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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Cost-Effective Three-Phase PMSM Drive Tolerant to Open-Phase Fault
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Cost-Effective Three-Phase PMSM Drive Tolerant to Open-Phase Fault

机译:具有成本效益的三相PMSM驱动器可承受开相故障

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摘要

This paper presents a low-cost fault-tolerant system for open-phase fault (OPF) in a power-converter-fed permanent-magnet synchronous machine. The proposed fault-tolerant system is based on field orientation control with additional fault tolerance functionality. A current predictive method for OPF detection is presented, together with an estimation of the threshold level for detection. The proposed method is based on the prediction of stator current for the next sampling interval. Furthermore, a new method for postfault operation of the machine is proposed. For optimal performance of the complete drive, a prefiring angle is introduced in order to avoid the temporary generation of negative torque. This improvement increases the average generated postfault electromagnetic torque, and consequently, it reduces the mechanical stress on various machine parts. The proposed fault detection and postfault operation solutions were simulated in MATLAB, and they were also tested on an experimental setup. The results show several advantages of the proposed fault-tolerant solution, like its short fault-detection time, substantial robustness against variation of machine parameters or load fluctuations, and negligible implementation costs, since no hardware modifications are needed. The fault detection algorithm does not require high computing power, and it operates well even during transients.
机译:本文提出了一种低成本的电力变换器馈电式永磁同步电机开相故障容错系统。所提出的容错系统基于具有附加容错功能的场定向控制。提出了一种用于OPF检测的当前预测方法,以及对检测阈值水平的估计。该方法基于对下一个采样间隔的定子电流的预测。此外,提出了一种用于机器故障后操作的新方法。为了使整个驱动装置达到最佳性能,引入了预点火角,以避免暂时产生负转矩。这种改进增加了平均产生的故障后电磁转矩,因此,它减小了各种机器零件上的机械应力。提出的故障检测和故障后操作解决方案在MATLAB中进行了仿真,并在实验装置上进行了测试。结果表明,所提出的容错解决方案具有多个优点,例如其故障检测时间短,对机器参数或负载波动的变化具有显着的鲁棒性,并且实现成本可忽略不计,因为不需要任何硬件修改。故障检测算法不需要很高的计算能力,即使在瞬态过程中也可以很好地运行。

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