期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Active suspension control of a one-wheel car model using single input rule modules fuzzy reasoning and a disturbance observer 被引量:7
1
作者 YOSHIMURA Toshio TERAMURA Itaru 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第4期251-256,共6页
This paper presents the construction of an active suspension control of a one-wheel car model using fuzzy reasoning and a disturbance observer. The one-wheel car model to be treated here can be approximately described... This paper presents the construction of an active suspension control of a one-wheel car model using fuzzy reasoning and a disturbance observer. The one-wheel car model to be treated here can be approximately described as a nonlinear two degrees of freedom system subject to excitation from a road profile. The active control is designed as the fuzzy control inferred by using single input rule modules fuzzy reasoning, and the active control force is released by actuating a pneumatic actuator. The excitation from the road profile is estimated by using a disturbance observer, and the estimate is denoted as one of the variables in the precondition part of the fuzzy control rules. A compensator is inserted to counter the performance degradation due to the delay of the pneumatic actuator. The experimental result indicates that the proposed active suspension system improves much the vibration suppression of the car model. Key words One-wheel car model - Active suspension system - Single input rule modules fuzzy reasoning - Pneumatic actuator - Disturbance observer Document code A CLC number TH16 展开更多
关键词 one-wheel car model Active suspension system Single input rule modules fuzzy reasoning Pneumatic actuator Disturbance observer
在线阅读 下载PDF
Pneumatic active suspension system for a one-wheel car model using fuzzy reasoning and a disturbance observer 被引量:3
2
作者 YOSHIMURAToshio TAKAGIAtsushi 《Journal of Zhejiang University Science》 CSCD 2004年第9期1060-1068,共9页
This paper presents the construction of a pneumatic active suspension system for a one-wheel car model using fuzzy reasoning and a disturbance observer. The one-wheel car model can be approximately described as a nonl... This paper presents the construction of a pneumatic active suspension system for a one-wheel car model using fuzzy reasoning and a disturbance observer. The one-wheel car model can be approximately described as a nonlinear two degrees of freedom system subject to excitation from a road profile. The active control is composed of fuzzy and disturbance controls, and the active control force is constructed by actuating a pneumatic actuator. A phase lead-lag compensator is inserted to counter the performance degradation due to the delay of the pneumatic actuator. The experimental result indicates that the proposed active suspension improves much the vibration suppression of the car model. 展开更多
关键词 one-wheel car model Active suspension system Fuzzy reasoning Pneumatic actuator Disturbance observer
在线阅读 下载PDF
The Development of Self-Balancing Controller for One-Wheeled Vehicles 被引量:3
3
作者 Chung-Neng Huang 《Engineering(科研)》 2010年第4期212-219,共8页
The purpose of this study is to develop a self-balancing controller (SBC) for one-wheeled vehicles (OWVs). The composition of the OWV system includes: a DSP motion card, a wheel motor, and its driver. In addition, a t... The purpose of this study is to develop a self-balancing controller (SBC) for one-wheeled vehicles (OWVs). The composition of the OWV system includes: a DSP motion card, a wheel motor, and its driver. In addition, a tilt and a gyro, for sensing the angle and angular velocity of the body slope, are used to realize self-balancing controls. OWV, a kind of unicycle robot, can be dealt with as a mobile-inverted-pendulum system for its instability. However, for its possible applications in mobile carriers or robots, it is worth being further developed. In this study, first, the OWV system model will be derived. Next, through the simulations based on the mathematical model, the analysis of system stability and controllability can be evaluated. Last, a concise and realizable method, through system pole-placement and linear quadratic regulator (LQR), will be proposed to design the SBC. The effectiveness, reliability, and feasibility of the proposal will be con- firmed through simulation studies and experimenting on a physical OWV. 展开更多
关键词 Self-balancing CONTROLLER one-wheeled Vehicle Mobile-inverted-pendulum POLE-PLACEMENT Linear Quadratic REGULATOR (LQR)
暂未订购
上一页 1 下一页 到第
使用帮助 返回顶部