A two-level interior-point decomposition algorithm for multi-stage stochastic capacity planning and technology acquisition (Q548466)

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scientific article; zbMATH DE number 5914296
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A two-level interior-point decomposition algorithm for multi-stage stochastic capacity planning and technology acquisition
scientific article; zbMATH DE number 5914296

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    A two-level interior-point decomposition algorithm for multi-stage stochastic capacity planning and technology acquisition (English)
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    28 June 2011
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    Summary: Manufacturing flexibility is recognised as one of the key strategies to address uncertain future products demand. Therefore, a growing need exists to investigate the strategic aspect of flexibility. To capture the different aspects of market flexibility in the face of this dynamic demand, this paper focuses on the role of product, volume, and expansion flexibility in the context of the multi-stage stochastic program. Moreover, we implement a two-level, interior-point decomposition algorithm based on the Analytic Center Cutting Plane Method (ACCPM) to solve the model. The central prices obtained by the ACCPM provides a fast convergence and promising computational results in terms of the number of iterations.
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    column generation
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    interior point method
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    ACCPM
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    analytic centre cutting plane method
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    stochastic optimisation
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    flexible manufacturing
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    decomposition algorithms
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    capacity planning
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    technology acquisition
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    manufacturing flexibility
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