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首页> 外文期刊>Energies >A Fast-Acting Diagnostic Algorithm of Insulated Gate Bipolar Transistor Open Circuit Faults for Power Inverters in Electric Vehicles
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A Fast-Acting Diagnostic Algorithm of Insulated Gate Bipolar Transistor Open Circuit Faults for Power Inverters in Electric Vehicles

机译:电动汽车功率逆变器绝缘栅双极晶体管开路故障的快速诊断算法

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To improve the diagnostic detection speed in electric vehicles, a novel diagnostic algorithm of insulated gate bipolar transistor (IGBT) open circuit faults for power inverters is proposed in this paper. The average of the difference between the actual three-phase current and referential three-phase current values over one electrical period is used as the diagnostic variable. The normalization method based on the amplitude of the d-q axis referential current is applied to the diagnostic variables to improve the response speed of diagnosis, and to avoid the noise and the delay caused by signal acquisition. In the parameter discretization process, the variable parameter moving average method (VPMAM) is adopted to solve the variation of the average value over a period with the speed of the motor; hence, the diagnostic reliability of the system is improved. This algorithm is robust, independent of load variations, and has a high resistivity against false alarms. Since only the three-phase current of the motor is utilized for calculations in the time domain, a fast diagnostic detection speed can be achieved, which is significantly essential for real-time control in electric vehicles. The effectiveness of the proposed algorithm is verified by both simulation and experimental results.
机译:为了提高电动汽车的诊断检测速度,提出了一种新型的逆变器绝缘栅双极型晶体管(IGBT)开路故障诊断算法。在一个电周期内,实际三相电流值和参考三相电流值之差的平均值被用作诊断变量。将基于d-q轴参考电流幅度的归一化方法应用于诊断变量,以提高诊断的响应速度,并避免由于信号采集而引起的噪声和延迟。在参数离散化过程中,采用可变参数移动平均法(VPMAM)来解决平均值在一段时间内随电机速度的变化。因此,提高了系统的诊断可靠性。该算法是鲁棒的,不受负载变化的影响,并且对误报具有很高的抵抗力。由于仅将电动机的三相电流用于时域计算,因此可以实现快速的诊断检测速度,这对于电动汽车的实时控制至关重要。仿真和实验结果均验证了所提算法的有效性。

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