轮毂式电机驱动电动汽车主动悬架滑模控制研究
作者:
作者单位:

1.福特汽车工程研究南京有限公司,南京 211100;2.上海大学 机电工程与自动化学院,上海 200072;3.石家庄铁道大学 机械工程学院,石家庄 050043

作者简介:

E-mail: xianjianjin@shu.edu.cnE-mail:xianjianjin@shu.edu.cn

通讯作者:

E-mail: xianjianjin@shu.edu.cn

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基金项目:

国家自然科学基金资助项目(51905329), 交通工程结构力学行为与系统安全国家重点实验室基金(KF2020-26), 上海市青年教师培养重点资助计划(ZZsd19038)


SLIDING MODE CONTROL FOR ACTIVE SUSPENSION OF IN-WHEEL-DRIVE ELECTRIC VEHICLES
Author:
Affiliation:

1.Ford Motor Engineering Research Nanjing Co., Ltd., Nanjing 211100, China;2.School of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200072, China;3.Shijiazhuang Tiedao University, Shijiazhuang 050043, China

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    摘要:

    悬架作为车身、车架和车轮之间的一个连接结构系统,对车辆的行驶平顺性、操纵稳定性、驾乘舒适性等具有较大影响.针对新型主动悬架系统能改善驾乘舒适性、防止驾驶者的疲劳,以及保证极限工况危急时刻车辆操控权限的优点,建立采用悬置轮毂式电机驱动的电动汽车四分之一主动悬架模型,设计了基于电磁作动器的主动悬架滑模控制系统,运用李雅普诺夫判据证明了该系统的稳定性,并采用趋近律方法降低滑动模态带来的抖振影响. 在Matlab/Simulink中进行四分之一主动悬架建模,与Carsim联合仿真实验,使用白噪声模拟的B级路面与冲击激励作为输入验证主动悬架系统的车身垂向加速度、悬架动挠度、轮胎动载荷等性能,结果表明:设计的滑模控制系统能够减少车身所受影响,明显提高车辆的驾乘舒适性和平顺性.

    Abstract:

    Suspension, as a connection structure system among the body, frame and wheels, has a great effect on vehicle ride comfort, handling stability, and driving comfort. As the new active suspension system can improve driving comfort, prevent fatigue of the driver, and ensure vehicle control authority under extreme working conditions, a quarter active suspension model of in-wheel-drive electric vehicles is established. A sliding mode controller(SMC) of an electromagnetic actuator-based active suspension is also designed, in which stability of the system is proved using Lyapunov criterion and the chattering in SMC is reduced by adopting the reaching law method. Simulations on B-level road and bump excitations are implemented to verify the performance of the designed controller-based the active suspension system, regarding the vertical acceleration of the vehicle body, the suspension dynamic deflection, and the tire dynamic load. The results show that the SMC can reduce the impact on the vehicle body and significantly enhance the vehicle driving comfort and ride comfort.

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张云,孙劭泽,金贤建,李韶华,杨俊朋,王佳栋.轮毂式电机驱动电动汽车主动悬架滑模控制研究[J].动力学与控制学报,2021,19(3):89~94; Zhang Yun, Sun Shaoze, Jin Xianjian, Li Shaohua, Yang Junpeng, Wang Jiadong. SLIDING MODE CONTROL FOR ACTIVE SUSPENSION OF IN-WHEEL-DRIVE ELECTRIC VEHICLES[J]. Journal of Dynamics and Control,2021,19(3):89-94.

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  • 收稿日期:2020-03-21
  • 最后修改日期:2020-08-17
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  • 在线发布日期: 2021-07-06
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