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首页> 外文期刊>Journal of power electronics >Low Parameter Sensitivity Deadbeat Direct Torque Control for Surface Mounted Permanent Magnet Synchronous Motors
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Low Parameter Sensitivity Deadbeat Direct Torque Control for Surface Mounted Permanent Magnet Synchronous Motors

机译:表面安装永磁同步电动机的低参数灵敏度无差拍直接转矩控制

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摘要

In order to decrease the parameter sensitivity of deadbeat direct torque control (DB-DTC), an improved deadbeat direct torque control method for surface mounted permanent-magnet synchronous motor (SPMSM) drives is proposed. First, the track errors of the stator flux and torque that are caused by model parameter mismatch are analyzed. Then a sliding mode observer is designed, which is able to predict the d-q axis currents of the next control period for one-step delay compensation, and to simultaneously estimate the model parameter disturbance. The estimated disturbance of this observer is used to estimate the stator resistance offline. Then the estimated resistance is required to update the designed sliding-mode observer, which can be used to estimate the inductance and permanent-magnetic flux linkage online. In addition, the flux and torque estimation of the next control period, which is unaffected by the model parameter disturbance, is achieved by using predictive d-q axis currents and estimated parameters. Hence, a low parameter sensitivity DB-DTC method is developed. Simulation and experimental results show the validity of the proposed direct control method.
机译:为了降低无差拍直接转矩控制(DB-DTC)的参数灵敏度,提出了一种改进的表面安装永磁同步电动机(SPMSM)驱动器的无差拍直接转矩控制方法。首先,分析了由模型参数不匹配引起的定子磁通和转矩的跟踪误差。然后设计了一个滑模观测器,它能够预测下一控制周期的d-q轴电流以进行单步延迟补偿,并同时估算模型参数扰动。该观测器的估计干扰用于离线估计定子电阻。然后,需要估算的电阻来更新设计的滑模观测器,该观测器可用于在线估算电感和永磁通量链接。另外,通过使用预测的d-q轴电流和估计的参数,可以实现不受模型参数干扰影响的下一个控制周期的磁通和转矩估计。因此,开发了低参数灵敏度的DB-DTC方法。仿真和实验结果表明了所提直接控制方法的有效性。

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