论文标题
在自动化材料流量模块的发展中改善不同工程阶段之间的可传递性
Improving transferability between different engineering stages in the development of automated material flow modules
论文作者
论文摘要
为了提高自动生产系统工程(APS)的灵活性和鲁棒性,如果扩展,减少或修改零件,几种方法提出了相关功能的封装和聚类,例如根据基于模块化体系结构的电气,机械或软件工程。考虑到这些模块的发展,有不同的阶段,例如必须完成的模块规划或功能工程。 AutomationMl提出了一个解决APS工程不同阶段的参考模型。由于这些不同的阶段以及几个工程学科的整合,例如机械,电气/电子或软件工程,不限于一项学科的信息会冗余地增加了转移信息的努力和不一致的风险。虽然,存在用于存储和交换植物工程信息的数据格式,例如AutomationMl,固定域特定的结构和信息的关系,例如对于自动材料流系统(AMF),缺失。本文介绍了将元模型集成到AMF的模块开发中,以提高不同工程阶段之间信息的可传递性和一致性,以及从粗粒植物计划到细粒度功能工程的细节水平的提高。
For improving flexibility and robustness of the engineering of automated production systems (aPS) in case of extending, reducing or modifying parts, several approaches propose an encapsulation and clustering of related functions, e.g. from the electrical, mechanical or software engineering, based on a modular architecture. Considering the development of these modules, there are different stages, e.g. module planning or functional engineering, which have to be completed. A reference model that addresses the different stages for the engineering of aPS is proposed by AutomationML. Due to these different stages and the integration of several engineering disciplines, e.g. mechanical, electrical/electronic or software engineering, information not limited to one discipline are stored redundantly increasing the effort to transfer information and the risk of inconsistency. Although, data formats for the storage and exchange of plant engineering information exist, e.g. AutomationML, fixed domain specific structures and relations of the information, e.g. for automated material flow systems (aMFS), are missing. This paper presents the integration of a meta model into the development of modules for aMFS to improve the transferability and consistency of information between the different engineering stages and the increasing level of detail from the coarse-grained plant planning to the fine-grained functional engineering.