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Aggregate production planning for shipbuilding with variation-inventory trade-offs

机译:具有变动库存权衡的造船总体生产计划

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摘要

Shipbuilding is a complex production system characterised by a complicated work and organisation structure, prolonged production lead time, and heterogeneous resource requirements. Thus, effectively planning all involved activities presents a challenging task and requires the timely coordination between the successive production stages at the plant level and effective resource allocation at the workshop level. With the work breakdown structure of all projects and their corresponding building strategies, the aggregate production planning (APP) is to address two important issues, namely, workforce level and inventory usage so that the fluctuating demands from downstream processes can be satisfied in a cost-effective manner. To achieve this, a novel APP model is proposed for ship production to minimise the variation of aggregate man-hour over the planning horizon and simultaneously minimise the logistic demands of the interim products. In view of the combinatorial nature and computational complexity, a directed genetic algorithm based solver has been developed to solve the two-conflicting-objective optimisation problem. The proposed approach has been applied to a case study and preliminary results have shown certain effectiveness in handling various situations with different planning strategies.
机译:造船是一个复杂的生产系统,其特征是复杂的工作和组织结构,延长的生产前置时间以及异构的资源需求。因此,有效地计划所有相关活动是一项艰巨的任务,需要在工厂级别的后续生产阶段与车间级别的有效资源分配之间进行及时的协调。借助所有项目的工作分解结构及其相应的构建策略,总生产计划(APP)将解决两个重要问题,即劳动力水平和库存使用情况,以便可以以成本满足下游流程的波动需求。有效的方式。为了实现这一目标,提出了一种新颖的APP模型用于船舶生产,以最大程度地减少计划工期内总工时的变化,同时最小化临时产品的物流需求。鉴于组合性质和计算复杂性,已经开发了基于定向遗传算法的求解器来解决两个冲突的目标优化问题。所提出的方法已应用于案例研究,初步结果显示出在处理具有不同计划策略的各种情况时的一定有效性。

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