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This book focuses on the design of Robotic Flexible Assembly Cell
(RFAC) with multi-robots. Its main contribution consists of a new
effective strategy for scheduling RFAC in a multi-product assembly
environment, in which dynamic status and multi-objective
optimization problems occur. The developed strategy, which is based
on a combination of advanced solution approaches such as
simulation, fuzzy logic, system modeling and the Taguchi
optimization method, fills an important knowledge gap in the
current literature and paves the way for future research towards
the goal of employing flexible assembly systems as effectively as
possible despite the complexity of their scheduling.
This book focuses on the design of Robotic Flexible Assembly Cell
(RFAC) with multi-robots. Its main contribution consists of a new
effective strategy for scheduling RFAC in a multi-product assembly
environment, in which dynamic status and multi-objective
optimization problems occur. The developed strategy, which is based
on a combination of advanced solution approaches such as
simulation, fuzzy logic, system modeling and the Taguchi
optimization method, fills an important knowledge gap in the
current literature and paves the way for future research towards
the goal of employing flexible assembly systems as effectively as
possible despite the complexity of their scheduling.
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