Author: Andreas Anders-Wilkens
Publisher: Meyer & Meyer Verlag
ISBN: 1841263346
Category : Sports & Recreation
Languages : en
Pages : 156
Book Description
Presents information and tips for beginning and advanced uncyclists, along with varieties of unicycle and unicycle team sports.
Parkour and Freerunning
Author: Jan Witfeld
Publisher: Meyer & Meyer Verlag
ISBN: 1841263192
Category : Biography & Autobiography
Languages : en
Pages : 316
Book Description
Introduces the sport of parkour, or freerunning, which combines the core elements of running, jumping, climbing, and other physical movements with the goal of moving the body over and around obstacles in an urban environment without stopping
Publisher: Meyer & Meyer Verlag
ISBN: 1841263192
Category : Biography & Autobiography
Languages : en
Pages : 316
Book Description
Introduces the sport of parkour, or freerunning, which combines the core elements of running, jumping, climbing, and other physical movements with the goal of moving the body over and around obstacles in an urban environment without stopping
Unicycling
Author: Andreas Anders-Wilkens
Publisher: Meyer & Meyer Verlag
ISBN: 1841261998
Category : Cycling
Languages : en
Pages : 154
Book Description
Aimed at those who want to get involved in the world of unicycling. With the aid of descriptions and illustrated by more than 125 photographs, this volume shows you how to get started and avoid common mistakes and injuries. It introduces more advanced techniques, such as riding backwards and 'bunny-hopping'.
Publisher: Meyer & Meyer Verlag
ISBN: 1841261998
Category : Cycling
Languages : en
Pages : 154
Book Description
Aimed at those who want to get involved in the world of unicycling. With the aid of descriptions and illustrated by more than 125 photographs, this volume shows you how to get started and avoid common mistakes and injuries. It introduces more advanced techniques, such as riding backwards and 'bunny-hopping'.
Dynamics of the Unicycle
Author: Michał Niełaczny
Publisher: Springer
ISBN: 3319953842
Category : Technology & Engineering
Languages : en
Pages : 85
Book Description
This book presents a three-dimensional model of the complete unicycle–unicyclist system. A unicycle with a unicyclist on it represents a very complex system. It combines Mechanics, Biomechanics and Control Theory into the system, and is impressive in both its simplicity and improbability. Even more amazing is the fact that most unicyclists don’t know that what they’re doing is, according to science, impossible – just like bumblebees theoretically shouldn’t be able to fly. This book is devoted to the problem of modeling and controlling a 3D dynamical system consisting of a single-wheeled vehicle, namely a unicycle and the cyclist (unicyclist) riding it. The equations of motion are derived with the aid of the rarely used Boltzmann–Hamel Equations in Matrix Form, which are based on quasi-velocities. The Matrix Form allows Hamel coefficients to be automatically generated, and eliminates all the difficulties associated with determining these quantities. The equations of motion are solved by means of Wolfram Mathematica. To more faithfully represent the unicyclist as part of the model, the model is extended according to the main principles of biomechanics. The impact of the pneumatic tire is investigated using the Pacejka Magic Formula model including experimental determination of the stiffness coefficient. The aim of control is to maintain the unicycle–unicyclist system in an unstable equilibrium around a given angular position. The control system, based on LQ Regulator, is applied in Wolfram Mathematica. Lastly, experimental validation, 3D motion capture using software OptiTrack – Motive:Body and high-speed cameras are employed to test the model’s legitimacy. The description of the unicycle–unicyclist system dynamical model, simulation results, and experimental validation are all presented in detail.
Publisher: Springer
ISBN: 3319953842
Category : Technology & Engineering
Languages : en
Pages : 85
Book Description
This book presents a three-dimensional model of the complete unicycle–unicyclist system. A unicycle with a unicyclist on it represents a very complex system. It combines Mechanics, Biomechanics and Control Theory into the system, and is impressive in both its simplicity and improbability. Even more amazing is the fact that most unicyclists don’t know that what they’re doing is, according to science, impossible – just like bumblebees theoretically shouldn’t be able to fly. This book is devoted to the problem of modeling and controlling a 3D dynamical system consisting of a single-wheeled vehicle, namely a unicycle and the cyclist (unicyclist) riding it. The equations of motion are derived with the aid of the rarely used Boltzmann–Hamel Equations in Matrix Form, which are based on quasi-velocities. The Matrix Form allows Hamel coefficients to be automatically generated, and eliminates all the difficulties associated with determining these quantities. The equations of motion are solved by means of Wolfram Mathematica. To more faithfully represent the unicyclist as part of the model, the model is extended according to the main principles of biomechanics. The impact of the pneumatic tire is investigated using the Pacejka Magic Formula model including experimental determination of the stiffness coefficient. The aim of control is to maintain the unicycle–unicyclist system in an unstable equilibrium around a given angular position. The control system, based on LQ Regulator, is applied in Wolfram Mathematica. Lastly, experimental validation, 3D motion capture using software OptiTrack – Motive:Body and high-speed cameras are employed to test the model’s legitimacy. The description of the unicycle–unicyclist system dynamical model, simulation results, and experimental validation are all presented in detail.