模块化(生物学)
产品(数学)
产品设计
产品工程
产品设计说明书
设计结构矩阵
计算机科学
制造工程
配置设计
过程(计算)
新产品开发
多样性(控制论)
建筑
大规模定制
工程类
系统工程
万维网
业务
个性化
人工智能
数学
几何学
操作系统
生物
艺术
视觉艺术
营销
遗传学
作者
Shuangyao Zhao,Qiang Zhang,Zhanglin Peng,Xiaonong Lu
标识
DOI:10.1016/j.aei.2022.101622
摘要
Product family design utilizes platform-based modularity to enable product variety and efficient mass-production. While product platform issues have attracted much attention from both academia and industry, traditional product platform design for product families emphasized the platform-based modularity that focuses on product structure dimension (functional or non-functional) to realize cost reductions during the design stage. Both the design architecture and manufacturing process are objectives that define product family modularity (PFM). They should be closely coupled with each other for the planning and configuration of platforms. This paper focuses on the product platform configuration by recognizing and utilizing shared product modules for product families. Instead of clustering product modules only based on their design structure, this approach differentiates each product variant, and considers the inherent relationship between product architecture and processing activities. The advantage is that similar components can be grouped and produced on a shared platform, thus benefitting from lower cost and shorter production time. First, both the architecture and manufacturing information of the product variety are captured in matrix format. Then, hierarchical clustering is applied over the components to generate PFM. Finally, a set of platforms are constructed to efficiently process most components of variants.
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