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Force estimation and control in human-robot interaction

By: Material type: TextTextLanguage: English Series: Topics in systems engineering ; Vol. 5Publication details: Singapore; World Scientific Publishing Co. Pte. Ltd., 2026.Description: ix, 183pISBN:
  • 978-9819813612
Subject(s): DDC classification:
  • 629.8924019 SCI-F
Summary: The study of human-machine interaction as a unique control system has been one of the first research interests in engineering, with nearly a century having passed since the first works in the field. At the same time, it is a crucial aspect of the most recent technological developments in applications of fields such as collaborative robotics and artificial intelligence.The cross-domain nature characterizing this field of study can cause difficulties in finding a guiding line that links motor control theory, modeling approaches of physiological control systems, and identifying human-machine general control models. In this book, the author aims to find such a guiding line by exploring the existing scientific efforts in these fascinating technological scenarios and proposing a novel approach that could enhance human-robot collaboration and interaction. The book is an academic reference and a practical guide for researchers and students in robotics, control systems, and artificial intelligence. The goal is to offer a combination of foundational theory, methodological innovation, and real-world applications to provide the reader with the insights necessary to implement and put into practice state-of-the-art methodologies in robotic control systems.Summary: Examines force estimation and control strategies for human-robot interaction, covering robotic manipulation, dynamic modelling, sensor-based force estimation, adaptive control, and collaborative robotics for safe and effective interaction between humans and robots.
Item type: Books and Monographs
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The study of human-machine interaction as a unique control system has been one of the first research interests in engineering, with nearly a century having passed since the first works in the field. At the same time, it is a crucial aspect of the most recent technological developments in applications of fields such as collaborative robotics and artificial intelligence.The cross-domain nature characterizing this field of study can cause difficulties in finding a guiding line that links motor control theory, modeling approaches of physiological control systems, and identifying human-machine general control models. In this book, the author aims to find such a guiding line by exploring the existing scientific efforts in these fascinating technological scenarios and proposing a novel approach that could enhance human-robot collaboration and interaction. The book is an academic reference and a practical guide for researchers and students in robotics, control systems, and artificial intelligence. The goal is to offer a combination of foundational theory, methodological innovation, and real-world applications to provide the reader with the insights necessary to implement and put into practice state-of-the-art methodologies in robotic control systems.

Examines force estimation and control strategies for human-robot interaction, covering robotic manipulation, dynamic modelling, sensor-based force estimation, adaptive control, and collaborative robotics for safe and effective interaction between humans and robots.

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