Human-Aware Robotics: Modeling Human Motor Skills for the Design, Planning and Control of a New Generation of Robotic Devices Human-Aware Robotics: Modeling Human Motor Skills for the Design, Planning and Control of a New Generation of Robotic Devices
Springer Tracts in Advanced Robotics

Human-Aware Robotics: Modeling Human Motor Skills for the Design, Planning and Control of a New Generation of Robotic Devices

    • $164.99
    • $164.99

Publisher Description

This book moves from a thorough investigation of human capabilities during movements and interactions with objects and environment and translates those principles into the design planning and control of innovative mechatronic systems, providing significant advancements in the fields of human–robot interaction, autonomous robots, prosthetics and assistive devices. The work presented in this monograph is characterized by a significant paradigmatic shift with respect to typical approaches, as it always place the human at the center of the technology developed, and the human represents the starting point and the actual beneficiary of the developed solutions.

The content of this book is targeted to robotics and neuroscience enthusiasts, researchers and makers, students and simple lovers of the matter.

GENRE
Professional & Technical
RELEASED
2022
25 January
LANGUAGE
EN
English
LENGTH
292
Pages
PUBLISHER
Springer International Publishing
SELLER
Springer Nature B.V.
SIZE
79.7
MB

Other Books in This Series

Robotics, Vision and Control Robotics, Vision and Control
2023
Robotics, Vision and Control Robotics, Vision and Control
2023
Robotics for Intralogistics in Supermarkets and Retail Stores Robotics for Intralogistics in Supermarkets and Retail Stores
2022
In-Hand Object Localization and Control: Enabling Dexterous Manipulation with Robotic Hands In-Hand Object Localization and Control: Enabling Dexterous Manipulation with Robotic Hands
2022
Collaborative Fleet Maneuvering for Multiple Autonomous Vehicle Systems Collaborative Fleet Maneuvering for Multiple Autonomous Vehicle Systems
2022
Model-Based Control of Flying Robots for Robust Interaction Under Wind Influence Model-Based Control of Flying Robots for Robust Interaction Under Wind Influence
2022