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首页> 外文期刊>International Journal of Automotive Technology >Integrated control of brake pressure and rear-wheel steering to improve lateral stability with fuzzy logic
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Integrated control of brake pressure and rear-wheel steering to improve lateral stability with fuzzy logic

机译:制动压力和后轮转向的集成控制,通过模糊逻辑提高横向稳定性

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摘要

This study introduces an integrated dynamic control with steering (IDCS) system to improve vehicle handling and stability under severe driving conditions. It integrates an active rear-wheel steering control system and a direct yawmoment control system with fuzzy logic. Direct yaw-moment control is achieved by modifying the optimal slip of the front outer wheel. An 8-degree-of-freedom vehicle model was used to evaluate the proposed IDCS for various road conditions and driving inputs. The results show that the yaw rate tracked the reference yaw rate and that the body slip angle was reduced when the IDCS was employed, thereby increasing the controllability and stability of the vehicle on slippery roads. The IDCS system reduced the deviation from the center line for a vehicle running on a split m road.
机译:这项研究引入了带转向的集成动态控制(IDCS)系统,以改善恶劣驾驶条件下的车辆操纵性能和稳定性。它集成了主动后轮转向控制系统和带有模糊逻辑的直接横摆力矩控制系统。通过改变前外轮的最佳滑移来实现直接横摆力矩控制。使用8自由度车辆模型评估各种道路条件和驾驶输入的拟议IDCS。结果表明,偏航率跟踪参考偏航率,并且当使用IDCS时,车身滑移角减小,从而增加了车辆在湿滑路面上的可控制性和稳定性。 IDCS系统减少了在分割公路上行驶的车辆与中心线的偏差。

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