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This book presents a structured approach to develop mathematical
optimization formulations for several variants of facility layout.
The range of layout problems covered includes row layouts, floor
layouts, multi-floor layouts, and dynamic layouts. The optimization
techniques used to formulate the problems are primarily
mixed-integer linear programming, second-order conic programming,
and semidefinite programming. The book also covers important
practical considerations for solving the formulations. The breadth
of approaches presented help the reader to learn how to formulate a
variety of problems using mathematical optimization techniques. The
book also illustrates the use of layout formulations in selected
engineering applications, including manufacturing, building design,
automotive, and hospital layout.
This book presents a structured approach to develop mathematical
optimization formulations for several variants of facility layout.
The range of layout problems covered includes row layouts, floor
layouts, multi-floor layouts, and dynamic layouts. The optimization
techniques used to formulate the problems are primarily
mixed-integer linear programming, second-order conic programming,
and semidefinite programming. The book also covers important
practical considerations for solving the formulations. The breadth
of approaches presented help the reader to learn how to formulate a
variety of problems using mathematical optimization techniques. The
book also illustrates the use of layout formulations in selected
engineering applications, including manufacturing, building design,
automotive, and hospital layout.
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