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Performance Improvement of Permanent-Magnet Synchronous Motor Using a New Deadbeat-Direct Current Controller

机译:使用新型无差拍直流电流控制器的永磁同步电动机的性能改进

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摘要

In this paper, a new deadbeat-direct current control (DB-DCC) method is proposed in which two adjacent active-voltage-vectors (AVVs) with one zero-voltage-vector (ZVV) are applied to an interior permanent-magnet synchronous motor in each control cycle. In this method, by considering the sign of the error between stator-current components and their corresponding reference values, two AVVs are selected. Then, the changes of stator-current components due to applying these AVVs are formulated. At the next step, duty-cycles of these AVVs are calculated such that deadbeat control of the stator-current components is achieved. To improve the efficiency of the proposed DB-DCC method, reference stator-current components are adjusted based on the principle of maximum-torque-per-ampere, while the ZVV is selected such that the minimum switching transition occurs in each control cycle. Performance of the proposed method is assessed in MATLAB software and in practice where the results indicate that the proposed method reduces the stator-current total harmonic distortion in the steady-state and improves the dynamic response of the motor in the transient-state. The performance of the proposed DB-DCC method is compared with recent model predictive-current controllers and deadbeat controllers where it is observed that by adopting the proposed method superior performance is achieved.
机译:本文提出了一种新的无差拍直流控制(DB-DCC)方法,其中将两个相邻的带有一个零电压矢量(ZVV)的有效电压矢量(AVV)应用于内部永磁同步每个控制周期中的电动机。在这种方法中,通过考虑定子电流分量及其对应的参考值之间的误差符号,选择了两个AVV。然后,阐述了由于应用这些AVV而引起的定子电流分量的变化。在下一步,计算这些AVV的占空比,以便实现定子电流分量的无差拍控制。为了提高所提出的DB-DCC方法的效率,参考定子电流分量基于最大每安培转矩原理进行调整,同时选择ZVV使得在每个控制周期中出现最小的切换过渡。在MATLAB软件中评估了该方法的性能,并在实践中评估了该方法的性能,结果表明,该方法可减少稳态时的定子电流总谐波失真,并改善瞬态时的电机动态响应。将提出的DB-DCC方法的性能与最新的模型预测电流控制器和无差拍控制器进行了比较,发现采用该提议的方法可以实现更高的性能。

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