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首页> 外文期刊>SAE International Journal of Commercial Vehicles >Study on Vehicle Stability Control by Using Model Predictive Controller and Tire-Road Force Robust Optimal Allocation
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Study on Vehicle Stability Control by Using Model Predictive Controller and Tire-Road Force Robust Optimal Allocation

机译:基于模型预测控制器和轮胎力鲁棒最优分配的车辆稳定性控制研究

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摘要

The vehicle chassis integrated control system can improve the stability of vehicles under extreme conditions using tire force allocation algorithm, in which, the nonlinearity and uncertainty of tire-road contact condition need to be taken into consideration. Thus, An MPC (Model Predictive Control) controller is designed to obtain the additional steering angle and the additional yaw moment. By using a robust optimal allocation algorithm, the additional yaw moment is allocated to the slip ratios of four wheels. An SMC (Sliding-Mode Control) controller is designed to maintain the desired slip ratio of each wheel. Finally, the control performance is verified in MATLAB-CarSim co-simulation environment with open-loop manoeuvers.
机译:车辆底盘集成控制系统可以利用轮胎力分配算法提高极端条件下的车辆稳定性,其中,需要考虑轮胎-道路接触条件的非线性和不确定性。因此,设计了MPC(模型预测控制)控制器来获得附加的转向角和附加的横摆力矩。通过使用可靠的最佳分配算法,可以将附加横摆力矩分配给四个车轮的滑移率。 SMC(滑模控制)控制器设计用于维持每个车轮所需的滑移率。最后,在MATLAB-CarSim协同仿真环境中,通过开环操作验证了控制性能。

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