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Torque Control of Electric Power Steering Systems Based on Improved Active Disturbance Rejection Control

机译:基于改进的主动扰动抑制控制的电动转向系统扭矩控制

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In the electric power steering (EPS) system, low-frequency disturbances such as road resistance, irregular mechanical friction, and changing motor parameters can cause steering wheel torque fluctuation and discontinuity. In order to improve the steering wheel torque smoothness, an improved torque control method of an EPS motor is proposed in the paper. A target torque algorithm is established, which is related to steering process parameters such as steering wheel angle and angular speed. Then, a target torque closed-loop control strategy based on the improved ADRC is designed to estimate and compensate the internal and external disturbance of the system, so as to reduce the impact of the disturbance on the steering torque. The simulation results show that the responsiveness and anti-interference ability of the improved ADRC is better than that of the conventional ADRC and PI. The vehicle experiment shows that the proposed control method has good motor current stability, steering torque smoothness, and flexibility when there is low-frequency disturbance.
机译:在电动转向(EPS)系统中,低频扰动,如道路电阻,不规则的机械摩擦和改变的电动机参数可能导致方向盘扭矩波动和不连续性。为了改善方向盘扭矩平滑度,在纸上提出了一种改进的EPS电动机的扭矩控制方法。建立了目标扭矩算法,其与转向过程参数诸如方向盘角度和角速度有关。然后,基于改进的ADRC的目标扭矩闭环控制策略设计用于估计和补偿系统的内部和外部干扰,以减少对转向扭矩对转向扭矩对扰动的影响。仿真结果表明,改进的ADRC的响应性和抗干扰能力优于传统ADRC和PI的响应性和抗干扰能力。车辆实验表明,所提出的控制方法具有良好的电动机电流稳定性,转向扭矩平滑度,并且在低频干扰时的灵活性。

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