Coordinated control of a semi-active suspension system and an electronic stability program on a finite-state basis

Guang Xia, Dong Guo, Xiwen Tang, Wuwei Chen
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引用次数: 2

Abstract

Considering the different effective working areas corresponding to respective functions of semi-active suspension systems (SASS) and electronic stability program (ESP) subsystems, the coordinated control of SASS and ESP based on the basis of finite-state is proposed to enhance the vehicle comprehensive performance. On the basis of the parallel connection between the SASS and ESP, an upper coordination controller on the finite-state basis is then combined in series with the SASS and ESP systems. The upper coordination controller identifies the vehicle's main driving conditions and make the strategy amendments to the bottom automotive semi-active suspension and electronic stability program. A SASS with PID control is presented along with an ESP with logic threshold control containing a variable slip rate and direct yaw moment control (DYC). Simulation results demonstrate that the coordinated control of the SASS and ESP on a finite-state basis can effectively improve the vehicle ride comfort and handling stability under multiple conditions.
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半主动悬架系统的协调控制与有限状态下的电子稳定程序
考虑到半主动悬架系统(SASS)和电子稳定程序(ESP)子系统各自功能对应的有效工作区域不同,提出了基于有限状态的SASS和ESP协调控制,以提高车辆的综合性能。在SASS和ESP并联的基础上,将有限状态基础上的上部协调控制器与SASS和ESP-系统串联。上部协调控制器识别车辆的主要驾驶条件,并对底部汽车半主动悬架和电子稳定程序进行策略修正。提出了一种带有PID控制的SASS和一种带有可变滑移率和直接横摆力矩控制(DYC)的逻辑阈值控制的ESP。仿真结果表明,SASS和ESP在有限状态下的协调控制可以有效地提高车辆在多种条件下的平顺性和操纵稳定性。
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来源期刊
International Journal of Vehicle Performance
International Journal of Vehicle Performance Engineering-Safety, Risk, Reliability and Quality
CiteScore
2.20
自引率
0.00%
发文量
30
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