基于位置信息公式和元数据系统处理图的制造业部件配置信息管理案例研究

T. Kodama, T. Kunii, Y. Seki
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引用次数: 0

摘要

在云计算时代,数据在云中进行处理,随着用户需求的变化,数据及其在系统或功能之间的依赖关系在云中不断进步和变化。这样的信息世界被称为网络世界。我们需要一个更强大的数学背景来模拟网络世界,以及一个有限的自动机来实现它作为一个计算机系统。我们认为增量模块化抽象层次(IMAH)最适合对网络世界进行建模。我们已经开发了一个数据处理系统,称为蜂窝数据系统(CDS)实现IMAH。本文引入了一个位置信息公式,用来识别公式中指定因子的相对位置,并对其进行处理,利用CDS中的位置信息公式得到子公式。在数据具有固定形式(如零件列表数据)的业务应用程序的开发中,此功能是不可避免的。以汽车零部件配置信息管理为例,验证了该公式的有效性。在案例研究中,证明了即使组件配置频繁变化,设计组件配置信息和制造组件配置信息也能得到一致的管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Case Study of Component Configuration Information Management in Manufacturing Using a Position Information Formula and the Processing Map of the Cellular Data System
In the era of cloud computing, data is processed in a Cloud, and data and its dependencies between systems or functions progress and change constantly within the cloud, as a user's requirements change. Such information worlds are called cyber worlds. We need a more powerful mathematical background which can model the cyber worlds as they are, and a finite automaton for implementing it as a computer system. We consider the Incrementally Modular Abstraction Hierarchy (IMAH) to be most appropriate to model the cyber worlds. We have developed a data processing system called the Cellular Data System (CDS) implementing IMAH. In this paper, we introduce a position information formula, which identifies the relative position of a specified factor in a formula, and its processing map, which obtains a sub-formula using the position information formula in CDS. This function is inevitable in the development of business applications where data have a fixed form, such as parts list data. We show the effectiveness of the formula by taking up a case study of component configuration information management in car manufacturing. In the case study, it is demonstrated that design component configuration information and manufacturring component configuration information are consistently managed even when component configuration frequently changes.
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