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Manufacturing Aspect of the IBCA Structure for Active Knowledge Content Representation in Product Model

机译:产品模型中主动知识内容表示的IBCA结构的制造方面

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Integration of all engineering activities for lifecycle of very complex multidisciplinary products in product lifecycle management (PLM) system has lead to very complex product models in leading industries. Product model was initially defined in the ISO 10303 standard by the International Organization for Standardization (ISO). In recent advanced PLM modeling, complexity of product is handled by knowledge driven self adaptive generic model while multidisciplinary conceptual modeling applies higher abstraction methods from systems engineering (SE). Company and personal experience and expertise based active knowledge is included in product model and accumulated as intelligent property (IP) of company. Higher abstraction levels have been included by using of requirement, functional, logical, and physical (RFLP) structure of product model. In the context of physical (P) level product information, product realization (PR) model structure is defined. PR includes model information for manufacturing processes, systems, and resources. The above scenario motivated research at the Laboratory of Intelligent Engineering Systems (LIES) in high level abstraction and request driven generation of RFLP and product realization (PR) structure elements in product model. This paper introduces new research results in the initiative, behavior, context and action (IBCA) structure. Two purposes of IBCA structure are to organize active IP in product model and driving generation of RFLP and PR structure elements using always actual IP. Next issue in this paper is analysis of possibility for connection PR model entities to active knowledge driven RFLP structure element definitions. In order to achieve industrially applicable solution, research results in IBCA structure can be implemented in any host industrial PLM system where RFLP and PR structures are available within a contextual product model system. IBCA structure is required to utilize special problem solving capabilities of soft computing methods.
机译:在产品生命周期管理(PLM)系统中,将非常复杂的多学科产品的生命周期的所有工程活动集成到产品中,导致领先行业的产品模型非常复杂。产品模型最初是由国际标准化组织(ISO)在ISO 10303标准中定义的。在最近的高级PLM建模中,产品的复杂性由知识驱动的自适应通用模型处理,而多学科概念建模则应用来自系统工程(SE)的更高抽象方法。公司和基于个人经验和专业知识的活动知识包含在产品模型中,并作为公司的知识产权(IP)积累。通过使用产品模型的需求,功能,逻辑和物理(RFLP)结构,可以包含更高的抽象级别。在物理(P)级产品信息的上下文中,定义了产品实现(PR)模型结构。 PR包括制造过程,系统和资源的模型信息。以上场景激发了智能工程系统实验室(LIES)的高层抽象研究,并要求驱动RFLP的生成以及产品模型中的产品实现(PR)结构元素。本文介绍了在主动性,行为,情境和行动(IBCA)结构方面的新研究成果。 IBCA结构的两个目的是组织产品模型中的活动IP,并始终使用实际IP来驱动RFLP和PR结构元素的生成。本文的下一个问题是分析将PR模型实体连接到主动知识驱动的RFLP结构元素定义的可能性。为了实现工业适用的解决方案,可以在任何上下文工业产品模型系统中可以使用RFLP和PR结构的主机工业PLM系统中实施IBCA结构的研究结果。需要IBCA结构来利用软计算方法的特殊问题解决能力。

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