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Robot and Multibody Dynamics: Analysis and Algorithms provides a
comprehensive and detailed exposition of a new mathematical
approach, referred to as the Spatial Operator Algebra (SOA), for
studying the dynamics of articulated multibody systems. The
approach is useful in a wide range of applications including
robotics, aerospace systems, articulated mechanisms, bio-mechanics
and molecular dynamics simulation. The book also: treats algorithms
for simulation, including an analysis of complexity of the
algorithms, describes one universal, robust, and analytically sound
approach to formulating the equations that govern the motion of
complex multi-body systems, covers a range of more advanced topics
including under-actuated systems, flexible systems, linearization,
diagonalized dynamics and space manipulators. Robot and Multibody
Dynamics: Analysis and Algorithms will be a valuable resource for
researchers and engineers looking for new mathematical approaches
to finding engineering solutions in robotics and dynamics.
Robot and Multibody Dynamics: Analysis and Algorithms provides a
comprehensive and detailed exposition of a new mathematical
approach, referred to as the Spatial Operator Algebra (SOA), for
studying the dynamics of articulated multibody systems. The
approach is useful in a wide range of applications including
robotics, aerospace systems, articulated mechanisms, bio-mechanics
and molecular dynamics simulation. The book also: treats algorithms
for simulation, including an analysis of complexity of the
algorithms, describes one universal, robust, and analytically sound
approach to formulating the equations that govern the motion of
complex multi-body systems, covers a range of more advanced topics
including under-actuated systems, flexible systems, linearization,
diagonalized dynamics and space manipulators. Robot and Multibody
Dynamics: Analysis and Algorithms will be a valuable resource for
researchers and engineers looking for new mathematical approaches
to finding engineering solutions in robotics and dynamics.
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