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Humanoid Robots: Modeling and Control

Autor Dragomir N. Nenchev, Atsushi Konno, Teppei Tsujita
en Limba Engleză Paperback – 25 noi 2018
Humanoid Robots: Modeling and Control provides systematic presentation of the models used in the analysis, design and control of humanoid robots. The book starts with a historical overview of the field, a summary of the current state of the art achievements and an outline of the related fields of research. It moves on to explain the theoretical foundations in terms of kinematic, kineto-static and dynamic relations. Further on, a detailed overview of biped balance control approaches is presented. Models and control algorithms for cooperative object manipulation with a multi-finger hand, a dual-arm and a multi-robot system are also discussed. One of the chapters is devoted to selected topics from the area of motion generation and control and their applications. The final chapter focuses on simulation environments, specifically on the step-by-step design of a simulator using the Matlab® environment and tools.
This book will benefit readers with an advanced level of understanding of robotics, mechanics and control such as graduate students, academic and industrial researchers and professional engineers. Researchers in the related fields of multi-legged robots, biomechanics, physical therapy and physics-based computer animation of articulated figures can also benefit from the models and computational algorithms presented in the book.


  • Provides a firm theoretical basis for modelling and control algorithm design
  • Gives a systematic presentation of models and control algorithms
  • Contains numerous implementation examples demonstrated with 43 video clips
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Specificații

ISBN-13: 9780128045602
ISBN-10: 0128045604
Pagini: 508
Dimensiuni: 191 x 235 x 27 mm
Greutate: 0.86 kg
Editura: ELSEVIER SCIENCE

Cuprins

1. Introduction2. Kinematics3. Statics4. Dynamics5. Balance Control6. Cooperative Object Manipulation and Control7. Motion Generation and Control: Selected TopicsWith Applications8. Simulation