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An Improved Central 60 degrees Synchronous Modulation for High Transient Performance with PMSM Stator Flux Control Used in Urban Rail Transit Systems

机译:PMSM定子磁通控制的改进的中央60度同步调制用于高瞬态性能,用于城市轨道交通系统

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摘要

Central 60 degrees synchronous modulation is an easy pulse-width modulation (PWM) method to implement for the traction inverters of urban rail trains at a very low switching frequency. Unfortunately, its switching patterns are determined by a Fourier analysis of assumed steady-state voltages. As a result, its transient responses are not very good with over-currents and high instantaneous torque pulses. In the proposed solution, the switching patterns of the conventional central 60 degrees modulation are modified according to the dynamic error between the target and actual stator flux. Then, the specific trajectory of the stator flux and current vector can be guaranteed, which leads to better system transients. In addition, stator flux control is introduced to get smooth mode switching between the central 60 degrees modulation and the other PWMs in this paper. A detailed flow chart of the control signal transmission is given. The target flux is obtained by an integral of the target voltage. The actual PMSM flux is estimated by a minimum order flux state observer based on the extended flux model. Based on a two-level inverter model, improved rules in the alpha-beta stationary coordinate system and equations of the switching patterns amendment are proposed. The proposed method is verified by simulation and experimental results.
机译:中央60度同步调制是一种简便的脉冲宽度调制(PWM)方法,可在非常低的开关频率下为城市轨道列车的牵引逆变器实现。不幸的是,其开关模式是通过假设稳态电压的傅立叶分析确定的。结果,在过电流和高瞬时转矩脉冲的情况下,其瞬态响应不是很好。在提出的解决方案中,根据目标和实际定子磁通之间的动态误差,修改了传统的中央60度调制的开关模式。然后,可以保证定子磁通和电流矢量的特定轨迹,从而导致更好的系统瞬变。此外,本文引入了定子磁通控制,以在中央60度调制与其他PWM之间进行平滑模式切换。给出了控制信​​号传输的详细流程图。通过目标电压的积分获得目标通量。最小阶通量状态观测器根据扩展通量模型估算实际的PMSM通量。在两级逆变器模型的基础上,提出了改进的α-β平稳坐标系规则和开关模式修正方程。仿真和实验结果验证了该方法的有效性。

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