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Sliding mode-based DTC-SVM control of permanent magnet synchronous motors for plug-in hybrid electric vehicles

机译:基于滑动模式的DTC-SVM控制永磁同步电动机插入式混合动力电动车辆

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This paper presents a novel controller design for a permanent magnet synchronous motor in a plug-in hybrid electric vehicle using DTC-SVM (Direct Torque Control-Space Vector Modulation) technique with sliding mode controllers. In order to adapt complicated driving environment and improve the robustness of the system, PI-based torque-load angle and speed controllers in the traditional DTC-SVM control scheme are replaced by sliding mode controllers. The stability and robustness of the proposed control system are analyzed. A computer simulation model is developed to verify the effectiveness of the proposed control system. The simulation results illustrate that fast response and small toque ripples are achieved using the proposed control scheme. It is also shown that the control system is robust against load variations, measurement errors and parameter uncertainty. The proposed control scheme is suitable for control of the propulsion motor applied to plug-in hybrid electric vehicles.
机译:本文采用了具有滑模控制器的DTC-SVM(直接扭矩控制空间向量调制)技术的插入式混合动力电动车中永磁同步电动机的新型控制器设计。为了适应复杂的驾驶环境,提高系统的鲁棒性,通过滑模控制器代替传统的DTC-SVM控制方案中的基于PI的扭矩负载角和速度控制器。分析了所提出的控制系统的稳定性和鲁棒性。开发了一种计算机仿真模型来验证所提出的控制系统的有效性。仿真结果说明使用所提出的控制方案实现快速响应和小型扭转涟漪。还示出了控制系统对负载变化,测量误差和参数不确定性具有稳健。所提出的控制方案适用于控制施加到插入式混合动力电动车辆的推进电动机的控制。

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