首页> 外文会议>ASME annual dynamic systems and control conference >EFFECTIVE BRAKE TORQUE ALLOCATION IN REGENERATIVE BRAKING SYSTEM CONSIDERING SHAFT VIBRATION USING MODEL PREDICTIVE CONTROL
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EFFECTIVE BRAKE TORQUE ALLOCATION IN REGENERATIVE BRAKING SYSTEM CONSIDERING SHAFT VIBRATION USING MODEL PREDICTIVE CONTROL

机译:模型预测控制在考虑轴振动的再生制动系统中的有效制动转矩分配

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A regenerative brake system is an effective way of recovering energy that would be lost as heat during brake operation, and such systems are widely used in hybrid and electric vehicles. This paper presents a multi-objective method for allocating brake torque between the hydraulic and regenerative brake systems using model predictive control. The proposed control method has two objectives: bandwidth-based torque allocation and reduction in driveshaft vibrations. A quarter-car model with a PMSM electric drive system is used to investigate this control method's effectiveness. The simulation results show that the vehicle stopping distance and the drive shaft vibrations will be reduced with the proposed control strategy.
机译:再生制动系统是回收在制动操作期间会因热量而损失的能量的有效方法,并且这种系统广泛用于混合动力和电动汽车。本文提出了一种使用模型预测控制在液压和再生制动系统之间分配制动转矩的多目标方法。所提出的控制方法有两个目标:基于带宽的转矩分配和减少传动轴振动。具有PMSM电驱动系统的四分之一汽车模型用于研究此控制方法的有效性。仿真结果表明,所提出的控制策略将减少车辆的停车距离和驱动轴的振动。

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