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Design of Traction Power Supply System for Linear Motor Driven Urban Transit test line

机译:线性电动机驱动城市过境试线牵引电源系统设计

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A traction power supply system which adopted separately excited DC generator sets was designed. The desired output voltage was kept constant by regulating the rotary speed of induction motor and field current. In order to realize almost ripple-free operation in the entire speed range and achieve the position sensorless control, direct torque control based on space-vector modulation (DTC-SVM) strategy based on mutual model reference adaptive system (mutual MORAS) was used for induction motor. DTC-SVM is able to reduce the acoustical noise, the torque, flux, current, and speed pulsations during steady state. Mutual MRAS was adopted to implement a position sensorless DTC of an induction motor. Simulation and experiment on the traction power supply system indicates that the proposed control method produces better results than the classical DTC. The output voltage of the power supply system remains constant when load changes. The overall system performance was verified by experiments.
机译:设计了采用单独激励的直流发电机组的牵引电源系统。通过调节感应电动机和场电流的旋转速度,所需的输出电压保持恒定。为了在整个速度范围内实现几乎纹波操作,实现了基于相互模型参考自适应系统(相互MORAS)的空间传感器控制,基于空间 - 矢量调制(DTC-SVM)策略的直接扭矩控制感应电动机。 DTC-SVM能够在稳态期间降低声学噪声,扭矩,磁通量,电流和速度脉动。采用相互MRAS实现感应电动机的位置无传感器DTC。牵引电源系统上的仿真和实验表明所提出的控制方法比经典DTC产生更好的结果。负载变化时电源系统的输出电压保持恒定。通过实验验证整体系统性能。

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