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Learning Control: Applications in Robotics and Complex Dynamical
Systems provides a foundational understanding of control theory
while also introducing exciting cutting-edge technologies in the
field of learning-based control. State-of-the-art techniques
involving machine learning and artificial intelligence (AI) are
covered, as are foundational control theories and more established
techniques such as adaptive learning control, reinforcement
learning control, impedance control, and deep reinforcement
control. Each chapter includes case studies and real-world
applications in robotics, AI, aircraft and other vehicles and
complex dynamical systems. Computational methods for control
systems, particularly those used for developing AI and other
machine learning techniques, are also discussed at length.
Through expanded intelligence, the use of robotics has
fundamentally transformed a variety of fields, including
manufacturing, aerospace, medical, social services, and
agriculture. Providing successful techniques in robotic design
allows for increased autonomous mobility, which leads to a greater
productivity level. Novel Design and Applications of Robotics
Technologies provides innovative insights into the state-of-the-art
technologies in the design and development of robotic technologies
and their real-world applications. The content within this
publication represents the work of interactive learning, microrobot
swarms, and service robots. It is a vital reference source for
computer engineers, robotic developers, IT professionals,
academicians, and researchers seeking coverage on topics centered
on the application of robotics to perform tasks in various
disciplines.
This book introduces the state-of-the-art technologies in
mechatronics, robotics, and MEMS devices in order to improve their
methodologies. It provides a follow-up to "Advanced Mechatronics
and MEMS Devices" (2013) with an exploration of the most up-to-date
technologies and their applications, shown through examples that
give readers insights and lessons learned from actual projects.
Researchers on mechatronics, robotics, and MEMS as well as graduate
students in mechanical engineering will find chapters on:
Fundamental design and working principles on MEMS accelerometers
Innovative mobile technologies Force/tactile sensors development
Control schemes for reconfigurable robotic systems Inertial
microfluidics Piezoelectric force sensors and dynamic calibration
techniques ...And more. Authors explore applications in the areas
of agriculture, biomedicine, advanced manufacturing, and space.
Micro-assembly for current and future industries is also
considered, as well as the design and development of micro and
intelligent manufacturing.
Featuring selected contributions from the 2nd International
Conference on Mechatronics and Robotics Engineering, held in Nice,
France, February 18-19, 2016, this book introduces recent advances
and state-of-the-art technologies in the field of advanced
intelligent manufacturing. This systematic and carefully detailed
collection provides a valuable reference source for mechanical
engineering researchers who want to learn about the latest
developments in advanced manufacturing and automation, readers from
industry seeking potential solutions for their own applications,
and those involved in the robotics and mechatronics industry.
This book covers the state-of-the-art technologies in dynamic
balancing of mechanisms with minimum increase of mass and inertia.
The synthesis of parallel robots based on the Decomposition and
Integration concept is also covered in detail. The latest advances
are described, including different balancing principles, design of
reactionless mechanisms with minimum increase of mass and inertia,
and synthesizing parallel robots. This is an ideal book for
mechanical engineering students and researchers who are interested
in the dynamic balancing of mechanisms and synthesizing of parallel
robots. This book also: * Broadens reader understanding of the
synthesis of parallel robots based on the Decomposition and
Integration concept * Reinforces basic principles with detailed
coverage of different balancing principles, including input torque
balancing mechanisms * Reviews exhaustively the key recent research
into the design of reactionless mechanisms with minimum increase of
mass and inertia, such as the design of reactionless mechanisms
with auxiliary parallelograms, the design of reactionless
mechanisms with flywheels, and the design of reactionless
mechanisms by symmetrical structure design.
Address brain and cognitive intelligence based control Combine
neuroscience with robotics control Combine biomechanics with
robotics control Provide applications used in such as human-robot
interaction
The robotic mechanism and its controller make a complete system. As
the robotic mechanism is reconfigured, the control system has to be
adapted accordingly. The need for the reconfiguration usually
arises from the changing functional requirements. This book will
focus on the adaptive control of robotic manipulators to address
the changed conditions. The aim of the book is to summarise and
introduce the state-of-the-art technologies in the field of
adaptive control of robotic manipulators in order to improve the
methodologies on the adaptive control of robotic manipulators.
Advances made in the past decades are described in the book,
including adaptive control theories and design, and application of
adaptive control to robotic manipulators.
The robotic mechanism and its controller make a complete system. As
the robotic mechanism is reconfigured, the control system has to be
adapted accordingly. The need for the reconfiguration usually
arises from the changing functional requirements. This book will
focus on the adaptive control of robotic manipulators to address
the changed conditions. The aim of the book is to summarise and
introduce the state-of-the-art technologies in the field of
adaptive control of robotic manipulators in order to improve the
methodologies on the adaptive control of robotic manipulators.
Advances made in the past decades are described in the book,
including adaptive control theories and design, and application of
adaptive control to robotic manipulators.
The aim of the book is to introduce the state-of-the-art
technologies in the field of robotics, mechatronics and automation
in agriculture in order to summarize and review the improvements in
the methodologies in agricultural robotics. Advances made in the
past decades are described, including robotics for agriculture,
mechatronics for agriculture, kinematics, dynamics and control
analysis of agricultural robotics, and a wide range of topics in
the field of robotics, mechatronics and automation for agricultural
applications.
The aim of the book is to introduce the state-of-the-art
technologies in the field of robotics, mechatronics and automation
in agriculture in order to summarize and review the improvements in
the methodologies in agricultural robotics. Advances made in the
past decades are described, including robotics for agriculture,
mechatronics for agriculture, kinematics, dynamics and control
analysis of agricultural robotics, and a wide range of topics in
the field of robotics, mechatronics and automation for agricultural
applications.
This book introduces the state-of-the-art technologies in
mechatronics, robotics, and MEMS devices in order to improve their
methodologies. It provides a follow-up to "Advanced Mechatronics
and MEMS Devices" (2013) with an exploration of the most up-to-date
technologies and their applications, shown through examples that
give readers insights and lessons learned from actual projects.
Researchers on mechatronics, robotics, and MEMS as well as graduate
students in mechanical engineering will find chapters on:
Fundamental design and working principles on MEMS accelerometers
Innovative mobile technologies Force/tactile sensors development
Control schemes for reconfigurable robotic systems Inertial
microfluidics Piezoelectric force sensors and dynamic calibration
techniques ...And more. Authors explore applications in the areas
of agriculture, biomedicine, advanced manufacturing, and space.
Micro-assembly for current and future industries is also
considered, as well as the design and development of micro and
intelligent manufacturing.
Featuring selected contributions from the 2nd International
Conference on Mechatronics and Robotics Engineering, held in Nice,
France, February 18-19, 2016, this book introduces recent advances
and state-of-the-art technologies in the field of advanced
intelligent manufacturing. This systematic and carefully detailed
collection provides a valuable reference source for mechanical
engineering researchers who want to learn about the latest
developments in advanced manufacturing and automation, readers from
industry seeking potential solutions for their own applications,
and those involved in the robotics and mechatronics industry.
This book covers the state-of-the-art technologies in dynamic
balancing of mechanisms with minimum increase of mass and inertia.
The synthesis of parallel robots based on the Decomposition and
Integration concept is also covered in detail. The latest advances
are described, including different balancing principles, design of
reactionless mechanisms with minimum increase of mass and inertia,
and synthesizing parallel robots. This is an ideal book for
mechanical engineering students and researchers who are interested
in the dynamic balancing of mechanisms and synthesizing of parallel
robots. This book also: * Broadens reader understanding of the
synthesis of parallel robots based on the Decomposition and
Integration concept * Reinforces basic principles with detailed
coverage of different balancing principles, including input torque
balancing mechanisms * Reviews exhaustively the key recent research
into the design of reactionless mechanisms with minimum increase of
mass and inertia, such as the design of reactionless mechanisms
with auxiliary parallelograms, the design of reactionless
mechanisms with flywheels, and the design of reactionless
mechanisms by symmetrical structure design.
Through expanded intelligence, the use of robotics has
fundamentally transformed a variety of fields, including
manufacturing, aerospace, medical, social services, and
agriculture. Providing successful techniques in robotic design
allows for increased autonomous mobility, which leads to a greater
productivity level. Novel Design and Applications of Robotics
Technologies provides innovative insights into the state-of-the-art
technologies in the design and development of robotic technologies
and their real-world applications. The content within this
publication represents the work of interactive learning, microrobot
swarms, and service robots. It is a vital reference source for
computer engineers, robotic developers, IT professionals,
academicians, and researchers seeking coverage on topics centered
on the application of robotics to perform tasks in various
disciplines.
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