Application of the Two-Stage Stochastic Programming for Optimizing Chemical Production Planning under Uncertainties
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概要
- 論文の詳細を見る
Most models for chemical production planning are based on deterministic programming approaches without considering uncertainty. This paper presents a two-stage stochastic programming model for chemical production planning optimization with management of purchase and inventory under economic uncertainties including prices of raw materials, product prices and demands, and uses the Monte Carlo sampling method to solve it. The expected profit is maximized taking into account raw materials costs, inventory costs, operating costs and costs of lost demand under economic uncertainties, while the production planning and purchase scheme are optimized simultaneously. The proposed model is validated by a real chemical enterprise based on GIOCIMS (Graphical I/O Chemical Industry Modeling System). The results indicate that the two-stage stochastic programming model can suggest a solution with higher expected profit and lower risk than the one suggested by deterministic programming model.
- 社団法人 化学工学会の論文
- 2009-07-01
著者
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Li Chu-fu
Department Of Chemical Engineering Tsinghua University
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He Xiao-rong
Dep. Of Chemical Engineering Tsinghua Univ.
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Huang Guang-lei
Sinopec Baling Company
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Dong Chun-jian
Sinopec Baling Co.
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Chen Bing-zhen
Dep. Of Chemical Engineering Tsinghua Univ.
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ZOU Lai-Xi
Department of Chemical Engineering, Tsinghua University
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CHEN Bing-Zhen
Department of Chemical Engineering, Tsinghua University
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HE Xiao-Rong
Department of Chemical Engineering, Tsinghua University
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DUAN Yong-Hong
SINOPEC Baling Company
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XIAO Ying-Feng
SINOPEC Baling Company
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Chen Bing-zhen
Department Of Chemical Engineering Tsinghua University
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He Xiao-rong
Department Of Chemical Engineering Tsinghua University
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Zou Lai-xi
Department Of Chemical Engineering Tsinghua University
関連論文
- Application of the Two-Stage Stochastic Programming for Optimizing Chemical Production Planning under Uncertainties
- Chemical Production Planning Optimization with Optimal Management of Purchase and Inventory
- Numerical Analysis Tool for Obtaining Steady-State Solutions and Analyzing Their Stability Characteristics for Nonlinear Dynamic Systems