首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >EXPERIENCES IN MODELING, SIMULATION AND OPTIMIZATION OF CHEMICAL INDUSTRY SUPPLY CHAINS
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EXPERIENCES IN MODELING, SIMULATION AND OPTIMIZATION OF CHEMICAL INDUSTRY SUPPLY CHAINS

机译:化工供应链建模,仿真和优化的经验

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摘要

We have developed and applied simulation as well as combined simulation ― optimization models to represent process industry plant logistics and supply chain operations. The simulation model represents plant production, inventory, and shipping operations as well as inter-plant shipments. When a combined simulation-optimization approach is used, the simulation periodically invokes a classical production planning optimization model to set production and shipping levels. These levels are retrieved by and used in the simulation model. Process industry supply chain operations include stochastic elements such as customer demands whose expected values may vary in time as well as transportation lead times. The complexity of individual plant operations and logistics must be considered. Simulation provides the methods needed to integrate these elements in a single model. Periodically during a simulation run, production planning decisions that require optimization models may be made. Simulation experimental results are used to determine service levels to end customers as well as to set rail fleet sizes, inventory capacities, and capital equipment requirements for logistics as well as to assess alternative shipping schedules.
机译:我们已经开发并应用了仿真以及组合仿真-优化模型,以代表过程工业工厂的物流和供应链运营。仿真模型表示工厂生产,库存和运输操作以及工厂间运输。当使用组合的模拟优化方法时,模拟会定期调用经典的生产计划优化模型来设置生产和运输水平。这些级别由仿真模型检索并在仿真模型中使用。流程工业供应链的运作包括一些随机因素,例如客户需求,其期望值可能会随时间和运输提前期而变化。必须考虑单个工厂运营和物流的复杂性。仿真提供了将这些元素集成到单个模型中所需的方法。在仿真运行期间,可以定期做出需要优化模型的生产计划决策。仿真实验结果用于确定最终客户的服务水平,以及设置铁路车队的规模,库存容量和物流的基本设备要求,以及评估替代的运输计划。

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