Abstract. The linearized equations of motion for a bicycle of the usual construction travelling straight ahead on a level surface have been the subject of several previous studies. In the simplest models, the pure-rolling conditions of the knife-edge wheels are introduced as non-holonomic constraints and the rider is assumed to be rigidly attached to the rear frame. There are two degrees of freedom for the lateral motion, the lean angle of the rear frame and the steering angle. In the present paper, the model is extended in several ways, while the simplicity of having only two degrees of freedom is retained. The extensions of the model comprise the shape of the tires, which are allowed to have a finite transverse radius of curvature, the ef...
International audienceThough the bicycle is a familiar object of everyday life, modelling its full n...
Nowadays, Automated Driving has a growing interest in the scientific and industrial automotive commu...
In this paper we explore the dynamics of a single-track car model. We develop a model of a rigid car...
The purpose of this paper is to study the dynamics of the accelerating bicycle under straight-runnin...
In this paper we present a nonlinear benchmark bicycle dynamics with toroidal wheels. Using a symbol...
This paper proposes a mathematical model of a motorcycle that deals with the lateral and longitudin...
<p>This work is concerned with the dynamics and stability of nonlinear systems that roll in a single...
Single-track vehicles are multibody systems which include bicycles, motorcycles and motor scooters. ...
Mechanics laws and geometryDrag the front wheel (red point) of an idealized bicycle in the plane. Gi...
AbstractThis work deals with the modelling and control of a riderless bicycle (see Figure 1). It is ...
Stability of land vehicle motions consisting of yaw, sideslip, and roll motion of the sprung mass is...
Under the objective of modeling, simulating and controlling the dynamics of bicycles in dangerous si...
There are still important knowledge gaps regarding stability and safety of bicycle riding. Every yea...
To work towards an advanced model of the bicycle-rider-environment system, an open-loop bicycle-ride...
Bicycle kinematics with toroidal wheels is presented in this paper. Using symbolic mathematic tool M...
International audienceThough the bicycle is a familiar object of everyday life, modelling its full n...
Nowadays, Automated Driving has a growing interest in the scientific and industrial automotive commu...
In this paper we explore the dynamics of a single-track car model. We develop a model of a rigid car...
The purpose of this paper is to study the dynamics of the accelerating bicycle under straight-runnin...
In this paper we present a nonlinear benchmark bicycle dynamics with toroidal wheels. Using a symbol...
This paper proposes a mathematical model of a motorcycle that deals with the lateral and longitudin...
<p>This work is concerned with the dynamics and stability of nonlinear systems that roll in a single...
Single-track vehicles are multibody systems which include bicycles, motorcycles and motor scooters. ...
Mechanics laws and geometryDrag the front wheel (red point) of an idealized bicycle in the plane. Gi...
AbstractThis work deals with the modelling and control of a riderless bicycle (see Figure 1). It is ...
Stability of land vehicle motions consisting of yaw, sideslip, and roll motion of the sprung mass is...
Under the objective of modeling, simulating and controlling the dynamics of bicycles in dangerous si...
There are still important knowledge gaps regarding stability and safety of bicycle riding. Every yea...
To work towards an advanced model of the bicycle-rider-environment system, an open-loop bicycle-ride...
Bicycle kinematics with toroidal wheels is presented in this paper. Using symbolic mathematic tool M...
International audienceThough the bicycle is a familiar object of everyday life, modelling its full n...
Nowadays, Automated Driving has a growing interest in the scientific and industrial automotive commu...
In this paper we explore the dynamics of a single-track car model. We develop a model of a rigid car...