The Intelligent Systems Series comprises titles that present
state-of-the-art knowledge and the latest advances in intelligent
systems. Its scope includes theoretical studies, design methods,
and real-world implementations and applications.
Flexible manipulators play a critical role in applications in a
diverse range of fields, such as construction automation,
environmental applications, and space engineering. Due to the
complexity of the link deformation and dynamics, the research
effort on accurate modeling and high performance control of
flexible manipulators has increased dramatically in recent years.
This book presents analysis, data and insights that will of
particular use for researchers and engineers working on the
optimization and control of robotic manipulators and automation
systems.
Government and industry groups have specifically stressed the
importance of innovation in robotics, manufacturing automation, and
control systems for maintaining innovation and high-value-added
manufacturing
Discusses the latest research on the quantitative effects of
size, shape, mass distribution, tip load, on the dynamics and
operational performance of flexible manipulators
Presents unique analyses critical to the effective modeling and
optimization of manipulators: hard to find data unavailable
elsewhere.
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