Systematic approach for developing Holonic Manufacturing Execution Systems

F. Cheng, Shang-Lun Wu, Chih-Feng Chang
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引用次数: 10

Abstract

The manufacturing industry needs highly flexible manufacturing systems to cope with the complicated manufacturing environment. To meet the above requirements, we adopt the concepts that were derived from a study of social organizations and living organisms, and translate them into a set of appropriate concepts, such as holon and holarchy, for manufacturing industries. Holon and holarchy possess the properties of intelligence, autonomy, cooperation, reconfigurability, and extensibility. Advanced manufacturing systems also possess the capabilities of security certification and error recovery. Based on these properties, a systematic approach is proposed to develop a Holonic Manufacturing Execution System (HMES) for the semiconductor industry. This systematic approach is started with systems analysis by collecting domain requirements and analyzing domain knowledge. Then the HMES Holarchy is designed by: constructing an abstract object model based on domain knowledge; partitioning application domain into functional holons; identifying generic parts among functional holons; developing the Generic Holon; defining holarchy messages and holarchy framework of HMES; and finally designing functional holons based on the Generic Holon. This proposed systematic approach provides a novel and efficient way to design HMES.
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开发全息制造执行系统的系统方法
制造业需要高度灵活的制造系统来应对复杂的制造环境。为了满足上述要求,我们采用了来自社会组织和生物研究的概念,并将其转化为一套适合制造业的概念,如holon和holarchy。Holon和holarchy具有智能性、自主性、协作性、可重构性和可扩展性。先进的制造系统还具有安全认证和错误恢复的能力。基于这些特性,提出了一种用于半导体工业的全息制造执行系统(HMES)的系统方法。这种系统化的方法是从系统分析开始的,通过收集领域需求和分析领域知识。然后通过构建基于领域知识的抽象对象模型来设计HMES整体结构;将应用领域划分为功能域;识别功能子中的通用部件;开发通用全息仪;定义了HMES的整体信息和整体框架;最后在通用Holon的基础上设计功能性Holon。提出的系统方法为HMES的设计提供了一种新颖有效的方法。
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