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首页> 外文期刊>Journal of power electronics >Improved Flux and Torque Estimators of a Direct Torque Controlled Interior PM Machine with Compensations for Dead-time Effects and Forward Voltage Drops
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Improved Flux and Torque Estimators of a Direct Torque Controlled Interior PM Machine with Compensations for Dead-time Effects and Forward Voltage Drops

机译:带有死区影响和正向压降补偿的直接转矩控制内部永磁电机的改进的磁通和转矩估计器

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摘要

The performance of direct torque controlled (DTC) interior permanent magnet (IPM) machines is poor at low speeds due to a few reasons, namely limited accuracy of stator voltage acquisition and the presence of offset and drift components in the acquired signals. Due to factors such as forward voltage drop across switching devices in the three phase inverter and dead-time of the devices, the voltage across the machine terminals differ from the reference voltage vector used to estimate stator flux and electromagnetic torque. This can lead to instability of the IPM drive during low speed operation. Compensation schemes for forward voltage drops and dead-time are proposed and implemented in real-time control, resulting in improved performance of the space vector modulated DTC IPM drive, especially at low speeds. No additional hardware is required for these compensators.
机译:由于以下原因,直接转矩控制(DTC)内部永磁体(IPM)机器的性能在低速时很差,原因是定子电压采集的精度有限以及采集信号中存在偏移和漂移分量。由于诸如三相逆变器中开关设备两端的正向压降以及设备的死区时间等因素,电机端子两端的电压与用于估算定子磁通和电磁转矩的参考电压矢量不同。在低速运行期间,这可能导致IPM驱动器不稳定。提出并在实时控制中实施了用于正向压降和停滞时间的补偿方案,从而改善了空间矢量调制DTC IPM驱动器的性能,尤其是在低速情况下。这些补偿器不需要其他硬件。

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