基于最优同步脉冲模式的永磁同步电机闭环控制

Zhaoyang Zhang, Xiaoyun Feng, Junfeng Xu
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引用次数: 6

摘要

永磁同步电动机因其运行效率高,在轨道车辆牵引传动中受到青睐。牵引逆变器总是在较低的开关频率下工作,以尽量减少半导体器件中的损耗。为了抑制电机电流谐波,可以采用离线计算的最佳同步脉冲模式。本文提出了一种永磁同步电动机牵引传动的闭环控制方法。提出了以相电流谐波均方根值最小为目标的优化问题。并给出了该问题的最优解。然后分析了最佳脉冲模式与其对应的最佳定子磁链轨迹之间的关系。通过迫使定子磁链矢量沿此最优轨迹运动,提出了永磁同步电机的闭环矢量控制方法。结合仿真和实验结果,阐述了采用不同脉冲模式的稳态工作模式以及不同脉冲模式在动态工作过程中的转换。结果验证了所提出的控制策略。
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Closed-loop control of PMSM based on optimal synchronous pulse patterns
Permanent magnet synchronous motor (PMSM) are favored in traction drives of rail vehicles for their high efficiency of operation. Traction inverters always operate at reduced switching frequency to minimize the losses in semiconductor devices. To restrain the motor current harmonics, off-lined calculated optimal synchronous pulse patterns can be used. This paper presents a closed-loop control of permanent magnet synchronous motor traction drives operated with optimal synchronous pulse patterns. The optimization problem was stated based on the minimization of the rms value of the phase current harmonics. And the optimum solutions of the problem were given. Then the relationships between the optimum pulse patterns and their corresponding optimum stator flux linkage trajectory were analyzed. By forcing the stator flux linkage vector to follow this optimum trajectory, a closed-loop vector control of PMSM was proposed. Using the simulation and experimental results, this paper elaborates on the steady-state operating modes for employing various pulse patterns and the transition of different pulse patterns during the dynamic operations. The results validate the proposed control strategy.
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