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YAW RATE AND SIDE-SLIP CONTROL CONSIDERING VEHICLE LONGITUDINAL DYNAMICS
- Tchamna, R.;
- Youn, I.
WEB OF SCIENCE
63SCOPUS
83초록
Most conventional vehicle stability controllers operate on the basis of many simplifying assumptions, such as a small steering wheel angle, constant longitudinal velocity and a small side-slip angle. This paper presents a new approach for controlling the yaw rate and side-slip of a vehicle without neglecting its longitudinal dynamics and without making simplifying assumptions about its motion. A sliding-mode controller is used to develop a differential braking controller for tracking a desired vehicle yaw rate for a given steering wheel angle, while keeping the vehicle's side-slip angle as small as possible. The trade-off that exists between yaw rate and side-slip control is described. Conventional and proposed algorithms are presented, and the effectiveness of the proposed controller is investigated using a seven-degree-of-freedom vehicle dynamics model. The simulation results demonstrate that the proposed controller is more effective than the conventional one.
키워드
- 제목
- YAW RATE AND SIDE-SLIP CONTROL CONSIDERING VEHICLE LONGITUDINAL DYNAMICS
- 저자
- Tchamna, R.; Youn, I.
- 발행일
- 2013-02
- 유형
- Article
- 권
- 14
- 호
- 1
- 페이지
- 53 ~ 60