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This book comprehensively presents a recently developed novel
methodology for analysis and control of time-delay systems.
Time-delays frequently occurs in engineering and science. Such
time-delays can cause problems (e.g. instability) and limit the
achievable performance of control systems. The concise and
self-contained volume uses the Lambert W function to obtain
solutions to time-delay systems represented by delay differential
equations. Subsequently, the solutions are used to analyze
essential system properties and to design controllers precisely and
effectively. Readership: Researchers and graduate students in
systems engineering, mechanical engineering, analysis &
differential equations and mathematical biology.
Process Control for Sheet-Metal Stamping presents a comprehensive
and structured approach to the design and implementation of
controllers for the sheet metal stamping process. The use of
process control for sheet-metal stamping greatly reduces defects in
deep-drawn parts and can also yield large material savings from
reduced scrap. Sheet-metal forming is a complex process and most
often characterized by partial differential equations that are
numerically solved using finite-element techniques. In this book,
twenty years of academic research are reviewed and the resulting
technology transitioned to the industrial environment. The
sheet-metal stamping process is modeled in a manner suitable for
multiple-input multiple-output control system design, with
commercially available sensors and actuators. These models are then
used to design adaptive controllers and real-time controller
implementation is discussed. Finally, experimental results from
actual shop floor deployment are presented along with ideas for
further improvement of the technology. Process Control for
Sheet-Metal Stamping allows the reader to design and implement
process controllers in a typical manufacturing environment by
retrofitting standard hydraulic or mechanical stamping presses and
as such will be of interest to practising engineers working in
metal-working, automotive and aeronautical industries. Academic
researchers studying improvements in process control and how these
affect the industries in which they are applied will also find the
text of value.
Process Control for Sheet-Metal Stamping presents a comprehensive
and structured approach to the design and implementation of
controllers for the sheet metal stamping process. The use of
process control for sheet-metal stamping greatly reduces defects in
deep-drawn parts and can also yield large material savings from
reduced scrap. Sheet-metal forming is a complex process and most
often characterized by partial differential equations that are
numerically solved using finite-element techniques. In this book,
twenty years of academic research are reviewed and the resulting
technology transitioned to the industrial environment. The
sheet-metal stamping process is modeled in a manner suitable for
multiple-input multiple-output control system design, with
commercially available sensors and actuators. These models are then
used to design adaptive controllers and real-time controller
implementation is discussed. Finally, experimental results from
actual shop floor deployment are presented along with ideas for
further improvement of the technology. Process Control for
Sheet-Metal Stamping allows the reader to design and implement
process controllers in a typical manufacturing environment by
retrofitting standard hydraulic or mechanical stamping presses and
as such will be of interest to practising engineers working in
metal-working, automotive and aeronautical industries. Academic
researchers studying improvements in process control and how these
affect the industries in which they are applied will also find the
text of value.
This engineering textbook is designed to introduce advanced control
systems for vehicles, including advanced automotive concepts and
the next generation of vehicles for ITS. For each automotive
control problem considered, the authors emphasise the physics and
underlying principles behind the control system concept and design.
This is an exciting and rapidly developing field for which many
articles and reports exist but no modern unifying text. An
extensive list of references is provided at the end of each chapter
for all the topics covered. It is currently the only textbook,
including problems and examples, that covers and integrates the
topics of automotive powertrain control, vehicle control, and
intelligent transportation systems. The emphasis is on fundamental
concepts and methods for automotive control systems, rather than
the rapidly changing specific technologies. Many of the text
examples, as well as the end-of-chapter problems, require the use
of MATLAB and/or SIMULINK.
This engineering textbook is designed to introduce advanced control
systems for vehicles, including advanced automotive concepts and
the next generation of vehicles for ITS. For each automotive
control problem considered, the authors emphasize the physics and
underlying principles behind the control system concept and design.
This is an exciting and rapidly developing field for which many
articles and reports exist but no modern unifying text. An
extensive list of references is provided at the end of each chapter
for all the topics covered. It is currently the only textbook,
including problems and examples, that that covers and integrates
the topics of automotive powertrain control, vehicle control, and
intelligent transportation systems. The emphasis is on fundamental
concepts and methods for automotive control systems, rather than
the rapidly changing specific technologies. Many of the text
examples, as well as the end-of-chapter problems, require the use
of MATLAB and/or SIMULINK.
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