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首页> 外文期刊>International Journal of Production Research >Multi-site integrated production-distribution planning with trans-shipment: a fuzzy goal programming approach
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Multi-site integrated production-distribution planning with trans-shipment: a fuzzy goal programming approach

机译:具有转运的多站点集成生产分配计划:模糊目标编程方法

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In multi-site (parallel) manufacturing systems, each selling region (SR) is usually allocated to a specific manufacturing site (MS) in order to minimise the transportation costs, simplify the planning process, etc. However, such manufacturing systems usually encounter great drawbacks in terms of over-achievement or under-achievement of the forecasted demand due to isolation of the MSs. To cope with this drawback, this paper proposes a novel framework for preparing an optimal aggregate production plan by interconnecting the MSs through lateral trans-shipment. In the presence of fluctuating and dynamic demands, we apply some classic strategies including the inventory holding, back-ordering, and additional capacity options (i.e. overtime and changing workforce level) as well as lateral trans-shipment of products among MSs as the feasible strategies undertaken. Maximising the total profit and minimising the manufacturing lead time are considered as two managerial goals. Due to ambiguousness of some critical parameters as well as vagueness of objectives' target values, a fuzzy goal programming (FGP) approach with imprecise goal hierarchy is developed for modelling the aggregate production-distribution planning (APDP) problem with trans-shipment. The proposed FGP model is then converted to an equivalent crisp one by combining the two recently developed fuzzy programming approaches. An illustrative example inspired by a real case study is provided to show the usefulness and applicability of the proposed model.
机译:在多站点(并行)制造系统中,通常将每个销售区域(SR)分配给特定的制造站点(MS),以最大程度地减少运输成本,简化计划流程等。但是,这样的制造系统通常会遇到很多麻烦。由于MS的隔离,在预测需求的过高实现或未实现方面存在缺陷。为了解决这个缺点,本文提出了一种新颖的框架,该框架用于通过横向转运将多方物流相互联系起来,从而准备最佳的集料生产计划。在需求波动和动态变化的情况下,我们采用一些经典策略,包括库存持有,补货和其他容量选项(例如,加班和不断变化的劳动力水平)以及在MS之间横向转移产品作为可行策略。承担。最大化总利润和最小化生产准备时间被视为两个管理目标。由于某些关键参数的含糊不清以及目标目标值的含糊不清,开发了一种具有不精确目标层次的模糊目标规划(FGP)方法,用于通过运输对总生产分配计划(APDP)问题进行建模。然后,通过结合两种最近开发的模糊规划方法,将提出的FGP模型转换为等效的清晰模型。提供了一个受实际案例研究启发的说明性示例,以显示所提出模型的有用性和适用性。

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