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Haptics for Virtual Reality and Teleoperation (Intelligent Systems, Control and Automation: Science and Engineering, 67, Band 64) - Hardcover

Buch 20 von 56: Intelligent Systems, Control and Automation: Science and Engineering

Mihelj, Matjaž; Podobnik, Janez

 
9789400757172: Haptics for Virtual Reality and Teleoperation (Intelligent Systems, Control and Automation: Science and Engineering, 67, Band 64)

Inhaltsangabe

This book covers all topics relevant for the design of haptic interfaces and teleoperation systems. The book provides the basic knowledge required for understanding more complex approaches and more importantly it introduces all issues that must be considered for designing efficient and safe haptic interfaces. Topics covered in this book provide insight into all relevant components of a haptic system.
The reader is guided from understanding the virtual reality concept to the final goal of being able to design haptic interfaces for specific tasks such as nanomanipulation. 

The introduction chapter positions the haptic interfaces within the virtual reality context. In order to design haptic interfaces that will comply with human capabilities at least basic understanding of human sensors-motor system is required. An overview of this topic is provided in the chapter related to human haptics. The book does not try to introduce the state-of-the-art haptic interface solutions because these tend to change quickly. Only a careful selection of different kinematic configurations is shown to introduce the reader into this field.

Mathematical models of virtual environment, collision detection and force rendering topics are strongly interrelated and are described in the next two chapters. The interaction with the virtual environment is simulated with a haptic interface. Impedance and admittance based approaches to haptic robot control are presented. Stability issues of haptic interaction are analyzed in details and solutions are proposed for guaranteeing stable and safe operation. Finally, haptic interaction is extended to teleoperation systems. Virtual fixtures which improve the teleoperation and human-robot cooperation in complex environments are covered next and the last chapter presents nanomanipulation as one specific example of teleoperation.

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Über die Autorin bzw. den Autor

Matja? Mihelj (Ph.D., University of Ljubljana, 2002) is a Full Professor at the University of Ljubljana. His research interests are in human-robot interaction, rehabilitation robotics, and wearable sensors. He has authored or coauthored over 40 journal publications and 9 monographs, and holds 3 patents. His contributions have been recognized with several national and international awards. Tadej Bajd (Ph.D., University of Ljubljana, 1979) is President of the Slovenian Academy of Sciences and Arts, a Professor Emeritus at the University of Ljubljana, and a Fellow of the IEEE, AIMBE, and EAMBES. He is a member of the European Academy of Sciences and Arts and Slovenian Academy of Engineering. He is the author or coauthor of over 100 journal papers and several monographs. Jadran Lenar¿i¿ (Ph.D., University of Ljubljana, 1986) is currently Director of the J. Stefan Institute, Ljubljana. His basic research interests include robotics, robot kinematics, biorobotics and humanoid robotics. He has edited a series of books on Advances in Robot Kinematics, and is a member of both the Slovenian Academy of Engineering and Accademia delle scienze di Bologna. Ale? Ude (Ph.D., University of Karlsruhe, 1995) is Head of the Department of Automatics, Biocybernetics, and Robotics at J. Stefan Institute, Ljubljana, and an Associate Professor at the University of Ljubljana. His research interests include robot sensorimotor learning, robot vision, humanoid robotics, and cognition. Ale? Stanovnik, (Ph.D., University of Ljubljana, 1980) is a Professor Emeritus of Physics with the University of Ljubljana. His research chiefly focused on experimental nuclear and particle physics. He is the author of a physics textbook and author or coauthor of more than 80 papers in scientific journals. Sebastjan ?lajpah (Ph.D., University of Ljubljana, 2015) is a Teaching Assistant for courses in the fields of robotics, robot control, and human-robot interaction. Hisresearch is focused on wearable sensors, haptics, collaborative robotics, and robot control. Jure Rejc (Ph.D., University of Ljubljana, 2008) is a researcher and Teaching Assistant for robotics and embedded systems. In addition, he works to develop robot-based applications and solutions for high-precision industrial measurements. Marko Munih (Ph.D., University of Ljubljana, 1993) is a Full Professor and Head of the Robolab at the University of Ljubljana. His research is focused on robots in interaction and haptic interfaces, as well as robots in construction and measurement work. He has authored or coauthored 120 peer-reviewed journal articles and 4 textbooks, and holds 5 patents.

Von der hinteren Coverseite

This book covers all topics relevant for the design of haptic interfaces and teleoperation systems. The book provides the basic knowledge required for understanding more complex approaches and more importantly it introduces all issues that must be considered for designing efficient and safe haptic interfaces. Topics covered in this book provide insight into all relevant components of a haptic system.
The reader is guided from understanding the virtual reality concept to the final goal of being able to design haptic interfaces for specific tasks such as nanomanipulation.

The introduction chapter positions the haptic interfaces within the virtual reality context. In order to design haptic interfaces that will comply with human capabilities at least basic understanding of human sensors-motor system is required. An overview of this topic is provided in the chapter related to human haptics. The book does not try to introduce the state-of-the-art haptic interface solutions because these tend to change quickly. Only a careful selection of different kinematic configurations is shown to introduce the reader into this field.

Mathematical models of virtual environment, collision detection and force rendering topics are strongly interrelated and are described in the next two chapters. The interaction with the virtual environment is simulated with a haptic interface. Impedance and admittance based approaches to haptic robot control are presented. Stability issues of haptic interaction are analyzed in details and solutions are proposed for guaranteeing stable and safe operation. Finally, haptic interaction is extended to teleoperation systems. Virtual fixtures which improve the teleoperation and human-robot cooperation in complex environments are covered next and the last chapter presents nanomanipulation as one specific example of teleoperation.

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